310 research outputs found
Observation of a ppb mass threshoud enhancement in \psi^\prime\to\pi^+\pi^-J/\psi(J/\psi\to\gamma p\bar{p}) decay
- Author
- Ablikim M
- Achasov MN
- An L
- An Q
- An ZH
- Bai JZ
- Ban Y
- Berger N
- Bian JM
- Boyko I
- Briere RA
- Bytev V
- Cai X
- Cao GF
- Cao XX
- Chang JF
- Chelkov G
- Chen G
- Chen HS
- Chen JC
- Chen LP
- Chen ML
- Chen P
- Chen SJ
- ChenYB
- Chu YP
- CroninHennessy D
- Dai HL
- Dai JP
- Dedovich D
- Deng ZY
- Denysenko I
- Destefanis M
- Ding Y
- Dong LY
- Dong MY
- Du SX
- Duan MY
- Fang J
- Feng CQ
- Fu CD
- Fu JL
- Gao Y
- Geng C
- Goetzen K
- Gong WX
- Greco M
- Grishin S
- Gu YT
- Guo AQ
- Guo LB
- Guo YP
- Han SQ
- Harris FA
- He KL
- He M
- He ZY
- Heng YK
- Hou ZL
- Hu HM
- Hu JF
- Hu T
- Hu XW
- Huang B
- Huang GM
- Huang JS
- Huang XT
- Huang YP
- Ji CS
- Ji Q
- Ji XB
- Ji XL
- Jia LK
- Jiang LL
- Jiang XS
- Jiao JB
- Jin DP
- Jin S
- Komamiya S
- Kuehn W
- Lange S
- Leung JKC
- Li C
- Li C
- Li DM
- Li F
- Li G
- Li HB
- Li J
- Li JC
- Li L
- Li L
- Li QJ
- Li WD
- Li WG
- Li XL
- Li XN
- Li XQ
- Li XR
- Li YX
- Li ZB
- Liang H
- Liang TR
- Liang YF
- Liang YT
- Liao GR
- Liao XT
- Liu BJ
- Liu CL
- Liu CX
- Liu CY
- Liu F
- Liu F
- Liu FH
- Liu GC
- Liu H
- Liu HB
- Liu HM
- Liu HW
- Liu J
- Liu JP
- Liu K
- Liu KY
- Liu Q
- Liu SB
- Liu XH
- Liu Y
- Liu YB
- Liu YF
- Liu YW
- Liu ZA
- Lu GR
- Lu YP
- Luo CL
- Luo MX
- Luo T
- Luo XL
- Lü JG
- Lü QW
- Lü XR
- Ma CL
- Ma FC
- Ma HL
- Ma QM
- Ma X
- Ma XY
- Maggiora M
- Mao YJ
- Mao ZP
- Min J
- Mo XH
- Muchnoi NYu
- Nefedov Y
- Ning FP
- Olsen SL
- Ouyang Q
- Pelizaeus M
- Peters K
- Ping JL
- Ping RG
- Poling R
- Pun CSJ
- Qi M
- Qian S
- Qiao CF
- Qiu JF
- Rong G
- Ruan XD
- Sarantsev A
- Shao M
- Shen CP
- Shen XY
- Sheng HY
- Sonoda S
- Spataro S
- Spruck B
- Sun DH
- Sun GX
- Sun JF
- Sun SS
- Sun XD
- Sun YJ
- Sun YZ
- Sun ZJ
- Sun ZT
- Tang CJ
- Tang X
- Tang XF
- Tian HL
- Toth D
- Varner GS
- Wan X
- Wang BQ
- Wang JK
- Wang K
- Wang LL
- Wang LS
- Wang P
- Wang PL
- Wang Q
- Wang SG
- Wang XD
- Wang XL
- Wang YD
- Wang YF
- Wang YQ
- Wang Z
- Wang ZG
- Wang ZY
- Wei DH
- Wen SP
- Wiedner U
- Wu LH
- Wu N
- Wu YM
- Wu Z
- Xiao ZJ
- Xie YG
- Xu GF
- Xu GM
- Xu H
- Xu M
- Xu M
- Xu XP
- Xu Y
- Xu ZZ
- Xue Z
- Yan L
- Yan WB
- Yan YH
- Yang HX
- Yang M
- Yang P
- Yang SM
- Yang YX
- Ye M
- Ye MH
- Yu BX
- Yu CX
- Yu L
- Yuan CZ
- Yuan Y
- Zeng Y
- Zhang BX
- Zhang BY
- Zhang CC
- Zhang DH
- Zhang HH
- Zhang HY
- Zhang JW
- Zhang JY
- Zhang JZ
- Zhang L
- Zhang SH
- Zhang XY
- Zhang Y
- Zhang YH
- Zhang ZP
- Zhao C
- Zhao HS
- Zhao JW
- Zhao JW
- Zhao L
- Zhao L
- Zhao MG
- Zhao Q
- Zhao SJ
- Zhao TC
- Zhao XH
- Zhao YB
- Zhao ZG
- Zhemchugov A
- Zheng B
- Zheng JP
- Zheng YH
- Zheng ZP
- Zhong B
- Zhong J
- Zhou L
- Zhou ZL
- Zhu C
- Zhu K
- Zhu KJ
- Zhu QM
- Zhu XW
- Zhu YS
- Zhu ZA
- Zhuang J
- Zou BS
- Zou JH
- Zuo JX
- Zweber P
- Publication venue
- 'IOP Publishing'
- Publication date
- 01/01/2010
- Field of study
The decay channel ψ′→π+π−J/ψ(J/ψ→γppˉ)
is studied using a sample of 1.06×108 ψ′ events collected
by the BESIII experiment at BEPCII. A strong enhancement at threshold is
observed in the ppˉ invariant mass spectrum. The enhancement can be fit
with an S-wave Breit-Wigner resonance function with a resulting peak mass of
M=1861−13+6(stat)−26+7(syst)MeV/c2 and a
narrow width that is Γ<38MeV/c2 at the 90% confidence level.
These results are consistent with published BESII results. These mass and width
values do not match with those of any known meson resonance.Comment: 5 pages, 3 figures, submitted to Chinese Physics
Determination of the number of J/ψ events with J/ψ → inclusive decays
- Author
- Ablikim M
- Achasov MN
- Ambrose DJ
- An FF
- An Q
- An ZH
- Bai JZ
- Ban Y
- Becker J
- Berger N
- Bertani M
- Bian JM
- Boger E
- Bondarenko O
- Boyko I
- Briere RA
- Bytev V
- Cai X
- Calcaterra A
- Cao GF
- Chang JF
- Chelkov G
- Chen G
- Chen HS
- Chen JC
- Chen ML
- Chen SJ
- Chen Y
- Chen YB
- Cheng HP
- Chu YP
- Cronin-Hennessy D
- Dai HL
- Dai JP
- Dedovich D
- Deng ZY
- Denig A
- Denysenko I
- Destefanis M
- Ding WM
- Ding Y
- Dong LY
- Dong MY
- Du SX
- Fang J
- Fang SS
- Fava L
- Feldbauer F
- Feng CQ
- Ferroli RB
- Fu CD
- Fu JL
- Gao Y
- Geng C
- Goetzen K
- Gong WX
- Gradl W
- Greco M
- Gu MH
- Gu YT
- Guan YH
- Guo AQ
- Guo LB
- Guo YP
- Han YL
- Hao XQ
- Harris FA
- Harris FA
- He KL
- He M
- He ZY
- Held T
- Heng YK
- Hou ZL
- Hu HM
- Hu JF
- Hu T
- Huang B
- Huang GM
- Huang JS
- Huang XT
- Huang YP
- Hussain T
- Ji CS
- Ji Q
- Ji XB
- Ji XL
- Jia LK
- Jiang LL
- Jiang XS
- Jiao JB
- Jiao Z
- Jin DP
- Jin S
- Jing FF
- Kalantar-Nayestanaki N
- Kavatsyuk M
- Kuehn W
- Lai W
- Lange JS
- Leung JKC
- Li C
- Li C
- Li CH
- Li DM
- Li F
- Li G
- Li HB
- Li JC
- Li K
- Li L
- Li NB
- Li QJ
- Li SL
- Li WD
- Li WG
- Li XL
- Li XN
- Li XQ
- Li XR
- Li ZB
- Liang H
- Liang YF
- Liang YT
- Liao GR
- Liao XT
- Liu BJ
- Liu CL
- Liu CX
- Liu CY
- Liu F
- Liu F
- Liu FH
- Liu H
- Liu HB
- Liu HH
- Liu HM
- Liu HW
- Liu JP
- Liu K
- Liu K
- Liu KY
- Liu PL
- Liu SB
- Liu X
- Liu XH
- Liu Y
- Liu YB
- Liu Z
- Liu Z
- Liu ZA
- Loehner H
- Lu GR
- Lu HJ
- Lu JG
- Lu M
- Lu QW
- Lu XP
- Lu XR
- Lu XR
- Luo CL
- Luo MX
- Luo T
- Luo XL
- Ma CL
- Ma FC
- Ma HL
- Ma QM
- Ma S
- Ma T
- Ma XY
- Ma Y
- Maas FE
- Maggiora M
- Malik QA
- Mao H
- Mao YJ
- Mao ZP
- Messchendorp JG
- Min J
- Min TJ
- Mitchell RE
- Mo XH
- Morales Morles C
- Motzko C
- Muchnoi NY
- Nefedov Y
- Nicholson C
- Nikolaev IB
- Ning Z
- Olsen SL
- Ouyang Q
- Pacetti S
- Park JW
- Pelizaeus M
- Peng HP
- Peters K
- Ping JL
- Ping RG
- Poling R
- Prencipe E
- Pun JCS
- Qi M
- Qian S
- Qiao CF
- Qin XS
- Qin Y
- Qin ZH
- Qiu JF
- Rashid KH
- Rong G
- Ruan XD
- Sarantsev A
- Schaefer BD
- Schulze J
- Shao M
- Shen CP
- Shen XY
- Sheng HY
- Shepherd MR
- Song XY
- Spataro S
- Spruck B
- Sun DH
- Sun GX
- Sun JF
- Sun SS
- Sun XD
- Sun YJ
- Sun YZ
- Sun ZJ
- Sun ZT
- Tang CJ
- Tang X
- Thorndike EH
- Tian HL
- Toth D
- Ullrich M
- Varner GS
- Wang B
- Wang BQ
- Wang K
- Wang LL
- Wang LS
- Wang M
- Wang P
- Wang PL
- Wang Q
- Wang QJ
- Wang QJ
- Wang SG
- Wang XF
- Wang XL
- Wang YD
- Wang YF
- Wang YQ
- Wang Z
- Wang ZG
- Wang ZY
- Wei DH
- Weidenkaff P
- Wen QG
- Wen SP
- Werner M
- Wiedner U
- Wu LH
- Wu N
- Wu SX
- Wu W
- Wu Z
- Xia LG
- Xiao ZJ
- Xie YG
- Xiu QL
- Xu GF
- Xu GM
- Xu H
- Xu QJ
- Xu XP
- Xu Y
- Xu ZR
- Xue F
- Xue Z
- Yan L
- Yan L
- Yan WB
- Yan YH
- Yang HX
- Yang T
- Yang Y
- Yang YX
- Ye H
- Ye M
- Ye MH
- Yu BX
- Yu CX
- Yu JS
- Yu SP
- Yuan CZ
- Yuan WL
- Yuan Y
- Zafar AA
- Zallo A
- Zeng Y
- Zhang B
- Zhang BX
- Zhang BY
- Zhang CC
- Zhang DH
- Zhang HH
- Zhang HY
- Zhang J
- Zhang JG
- Zhang JQ
- Zhang JW
- Zhang JY
- Zhang JZ
- Zhang L
- Zhang SH
- Zhang TR
- Zhang XJ
- Zhang XY
- Zhang Y
- Zhang YH
- Zhang YS
- Zhang ZP
- Zhang ZP
- Zhang ZY
- Zhao G
- Zhao HS
- Zhao HS
- Zhao JW
- Zhao KX
- Zhao L
- Zhao L
- Zhao MG
- Zhao Q
- Zhao SJ
- Zhao TC
- Zhao XH
- Zhao YB
- Zhao ZG
- Zhemchugov A
- Zheng JP
- Zheng YH
- Zheng ZP
- Zhong J
- Zhou L
- Zhou XK
- Zhou XR
- Zhu C
- Zhu K
- Zhu KJ
- Zhu SH
- Zhu XL
- Zhu XW
- Zhu YM
- Zhu YS
- Zhu ZA
- Zhuang J
- Zou BS
- Zou JH
- Zuo JX
- Publication venue
- 'IOP Publishing'
- Publication date
- 01/01/2012
- Field of study
postprin
Measurement of the matrix element for the decay η′→ηπ +π -
- Author
- Ablikim M
- Achasov MN
- An L
- An Q
- An ZH
- Bai JZ
- Baldini R
- Ban Y
- Becker J
- Berger N
- Bertani M
- Bian JM
- Bondarenko O
- Boyko I
- Briere RA
- Bytev V
- Cai X
- Cao GF
- Cao XX
- Chang JF
- Chelkov G
- Chen G
- Chen HS
- Chen JC
- Chen ML
- Chen SJ
- Chen Y
- Chen YB
- Cheng HP
- Chu YP
- CroninHennessy D
- Dai HL
- Dai JP
- Dedovich D
- Deng ZY
- Denysenko I
- Destefanis M
- Ding Y
- Dong LY
- Dong MY
- Du SX
- Duan MY
- Fan RR
- Fang J
- Fang SS
- Feng CQ
- Fu CD
- Fu JL
- Gao Y
- Geng C
- Goetzen K
- Gong WX
- Greco M
- Grishin S
- Gu MH
- Gu YT
- Guan YH
- Guo AQ
- Guo LB
- Guo YP
- Hao XQ
- Harris FA
- He KL
- He M
- He ZY
- Heng YK
- Hou ZL
- Hu HM
- Hu JF
- Hu T
- Huang B
- Huang GM
- Huang JS
- Huang XT
- Huang YP
- Hussain T
- Ji CS
- Ji Q
- Ji XB
- Ji XL
- Jia LK
- Jiang LL
- Jiang XS
- Jiao JB
- Jiao Z
- Jin DP
- Jin S
- Jing FF
- Kavatsyuk M
- Komamiya S
- Kuehn W
- Lange JS
- Leung JKC
- Li C
- Li C
- Li DM
- Li F
- Li G
- Li HB
- Li JC
- Li L
- Li NB
- Li QJ
- Li WD
- Li WG
- Li XL
- Li XN
- Li XQ
- Li XR
- Li ZB
- Liang H
- Liang YF
- Liang YT
- Liao GR
- Liao XT
- Liu BJ
- Liu BJ
- Liu CL
- Liu CX
- Liu CY
- Liu F
- Liu F
- Liu FH
- Liu GC
- Liu H
- Liu HB
- Liu HM
- Liu HW
- Liu JP
- Liu K
- Liu KY
- Liu Q
- Liu SB
- Liu X
- Liu XH
- Liu Y
- Liu YB
- Liu YW
- Liu ZA
- Liu ZQ
- Loehner H
- Lu GR
- Lu HJ
- Lu JG
- Lu QW
- Lu XR
- Lu YP
- Luo CL
- Luo MX
- Luo T
- Luo XL
- Ma CL
- Ma FC
- Ma HL
- Ma QM
- Ma T
- Ma X
- Ma XY
- Maggiora M
- Malik QA
- Mao H
- Mao YJ
- Mao ZP
- Messchendorp JG
- Min J
- Mitchell RE
- Mo XH
- Muchnoi NY
- Nefedov Y
- Ning Z
- Olsen SL
- Ouyang Q
- Pacetti S
- Pelizaeus M
- Peters K
- Ping JL
- Ping RG
- Poling R
- Pun CSJ
- Qi M
- Qian S
- Qiao CF
- Qin XS
- Qiu JF
- Rashid KH
- Rong G
- Ruan XD
- Sarantsev A
- Schulze J
- Shao M
- Shen CP
- Shen XY
- Sheng HY
- Shepherd MR
- Song XY
- Sonoda S
- Spataro S
- Spruck B
- Sun DH
- Sun GX
- Sun JF
- Sun SS
- Sun XD
- Sun YJ
- Sun YZ
- Sun ZJ
- Sun ZT
- Tang CJ
- Tang X
- Tang XF
- Tian HL
- Toth D
- Varner GS
- Wan X
- Wang BQ
- Wang K
- Wang LL
- Wang LS
- Wang M
- Wang P
- Wang PL
- Wang Q
- Wang SG
- Wang XL
- Wang YD
- Wang YF
- Wang YQ
- Wang Z
- Wang ZG
- Wang ZY
- Wei DH
- Wen QG
- Wen SP
- Wiedner U
- Wu LH
- Wu N
- Wu W
- Wu Z
- Xiao ZJ
- Xie YG
- Xu GF
- Xu GM
- Xu H
- Xu Y
- Xu ZR
- Xu ZZ
- Xue Z
- Yan L
- Yan WB
- Yan YH
- Yang HX
- Yang M
- Yang T
- Yang Y
- Yang YX
- Ye M
- Ye MH
- Yu BX
- Yu CX
- Yu L
- Yuan CZ
- Yuan WL
- Yuan Y
- Zafar AA
- Zallo A
- Zeng Y
- Zhang BX
- Zhang BY
- Zhang CC
- Zhang DH
- Zhang HH
- Zhang HY
- Zhang J
- Zhang JW
- Zhang JY
- Zhang JZ
- Zhang L
- Zhang SH
- Zhang TR
- Zhang XJ
- Zhang XY
- Zhang Y
- Zhang YH
- Zhang ZP
- Zhang ZY
- Zhao G
- Zhao HS
- Zhao J
- Zhao J
- Zhao L
- Zhao L
- Zhao MG
- Zhao Q
- Zhao SJ
- Zhao TC
- Zhao XH
- Zhao YB
- Zhao ZG
- Zhao ZL
- Zhemchugov A
- Zheng B
- Zheng JP
- Zheng YH
- Zheng ZP
- Zhong B
- Zhong J
- Zhong L
- Zhou L
- Zhou XK
- Zhou XR
- Zhu C
- Zhu K
- Zhu KJ
- Zhu SH
- Zhu XL
- Zhu XW
- Zhu YS
- Zhu ZA
- Zhuang J
- Zou BS
- Zou JH
- Zuo JX
- Zweber P
- Publication venue
- 'American Physical Society (APS)'
- Publication date
- 01/01/2011
- Field of study
The Dalitz plot of η⊃′→ηπ⊃+π⊃- decay is studied using (225.2±2.8)×106 J/ψ events collected with the BESIII detector at the BEPCII e⊃+e⊃- collider. With the largest sample of η⊃′ decays to date, the parameters of the Dalitz plot are determined in a generalized and a linear representation. Also, the branching fraction of J/ψ→γη⊃′ is determined to be (4.84±0.03±0.24)×10⊃-3, where the first error is statistical and the second systematic. © 2011 American Physical Society.published_or_final_versio
Higher-order multipole amplitude measurement in ψ ′→γχ c2
- Author
- Ablikim M
- Achasov MN
- Alberto D
- An FF
- An Q
- An ZH
- Bai JZ
- Baldini R
- Ban Y
- Becker J
- Berger N
- Bertani M
- Bian JM
- Boger E
- Bondarenko O
- Boyko I
- Briere RA
- Bytev V
- Cai X
- Calcaterra AC
- Cao GF
- Chang JF
- Chelkov G
- Chen G
- Chen HS
- Chen JC
- Chen ML
- Chen SJ
- Chen Y
- Chen YB
- Cheng HP
- Chu YP
- CroninHennessy D
- Dai HL
- Dai JP
- Dedovich D
- Deng ZY
- Denysenko I
- Destefanis M
- Ding Y
- Dong LY
- Dong MY
- Du SX
- Fang J
- Fang SS
- Feng CQ
- Fu CD
- Fu JL
- Gao Y
- Geng C
- Goetzen K
- Gong WX
- Greco M
- Gu MH
- Gu YT
- Guan YH
- Guo AQ
- Guo LB
- Guo YP
- Han YL
- Hao XQ
- Harris FA
- He KL
- He M
- He ZY
- Heng YK
- Hou ZL
- Hu HM
- Hu JF
- Hu T
- Huang B
- Huang GM
- Huang JS
- Huang XT
- Huang YP
- Hussain T
- Ji CS
- Ji Q
- Ji XB
- Ji XL
- Jia LK
- Jiang LL
- Jiang XS
- Jiao JB
- Jiao Z
- Jin DP
- Jin S
- Jing FF
- KalantarNayestanaki N
- Kavatsyuk M
- Kuehn W
- Lai W
- Lange JS
- Leung JKC
- Li C
- Li C
- Li CH
- Li DM
- Li F
- Li G
- Li HB
- Li JC
- Li K
- Li L
- Li NB
- Li QJ
- Li SL
- Li WD
- Li WG
- Li XL
- Li XN
- Li XQ
- Li XR
- Li ZB
- Liang H
- Liang YF
- Liang YT
- Liao XT
- Liu BJ
- Liu CL
- Liu CX
- Liu CY
- Liu F
- Liu F
- Liu FH
- Liu H
- Liu HB
- Liu HH
- Liu HM
- Liu HW
- Liu JP
- Liu K
- Liu K
- Liu KY
- Liu Q
- Liu SB
- Liu X
- Liu XH
- Liu Y
- Liu YB
- Liu YW
- Liu Z
- Liu Z
- Liu ZA
- Loehner H
- Lu GR
- Lu HJ
- Lu JG
- Lu QW
- Lu XR
- Lu YP
- Luo CL
- Luo MX
- Luo T
- Luo XL
- Lv M
- Ma CL
- Ma FC
- Ma HL
- Ma QM
- Ma S
- Ma T
- Ma X
- Ma XY
- Maggiora M
- Malik QA
- Mao H
- Mao YJ
- Mao ZP
- Messchendorp JG
- Min J
- Min TJ
- Mitchell RE
- Mo XH
- Muchnoi NY
- Nefedov Y
- Nikolaev IB
- Ning Z
- Olsen SL
- Ouyang Q
- Pacetti S
- Park JW
- Pelizaeus M
- Peters K
- Ping JL
- Ping RG
- Poling R
- Pun CSJ
- Qi M
- Qian S
- Qiao CF
- Qin XS
- Qiu JF
- Rashid KH
- Rong G
- Ruan XD
- Sarantsev A
- Schulze J
- Shao M
- Shen CP
- Shen XY
- Sheng HY
- Shepherd MR
- Song XY
- Spataro S
- Spruck B
- Sun DH
- Sun GX
- Sun JF
- Sun SS
- Sun XD
- Sun YJ
- Sun YZ
- Sun ZJ
- Sun ZT
- Tang CJ
- Tang X
- Tian HL
- Toth D
- Varner GS
- Wang B
- Wang BQ
- Wang K
- Wang LL
- Wang LS
- Wang M
- Wang P
- Wang PL
- Wang Q
- Wang QJ
- Wang SG
- Wang XL
- Wang YD
- Wang YF
- Wang YQ
- Wang Z
- Wang ZG
- Wang ZY
- Wei DH
- Wen QG
- Wen SP
- Wiedner U
- Wu LH
- Wu N
- Wu W
- Wu Z
- Xiao ZJ
- Xie YG
- Xiu QL
- Xu GF
- Xu GM
- Xu H
- Xu QJ
- Xu XP
- Xu Y
- Xu ZR
- Xu ZZ
- Xue Z
- Yan L
- Yan WB
- Yan YH
- Yang HX
- Yang T
- Yang Y
- Yang YX
- Ye H
- Ye M
- Ye MH
- Yu BX
- Yu CX
- Yu SP
- Yuan CZ
- Yuan WL
- Yuan Y
- Zafar AA
- Zallo A
- Zeng Y
- Zhang BX
- Zhang BY
- Zhang C
- Zhang CC
- Zhang DH
- Zhang HH
- Zhang HY
- Zhang J
- Zhang JQ
- Zhang JW
- Zhang JY
- Zhang JZ
- Zhang L
- Zhang SH
- Zhang TR
- Zhang XJ
- Zhang XY
- Zhang Y
- Zhang YH
- Zhang YS
- Zhang ZP
- Zhang ZY
- Zhao G
- Zhao HS
- Zhao J
- Zhao J
- Zhao L
- Zhao L
- Zhao MG
- Zhao Q
- Zhao SJ
- Zhao TC
- Zhao XH
- Zhao YB
- Zhao ZG
- Zhao ZL
- Zhemchugov A
- Zheng B
- Zheng JP
- Zheng YH
- Zheng ZP
- Zhong B
- Zhong J
- Zhong L
- Zhou L
- Zhou XK
- Zhou XR
- Zhu C
- Zhu K
- Zhu KJ
- Zhu SH
- Zhu XL
- Zhu XW
- Zhu YS
- Zhu ZA
- Zhuang J
- Zou BS
- Zou JH
- Zuo JX
- Publication venue
- 'American Physical Society (APS)'
- Publication date
- 01/01/2011
- Field of study
Using 106×106 ψ ′ events collected with the BESIII detector at the BEPCII storage ring, the higher-order multipole amplitudes in the radiative transition ψ ′→γχ c2→γπ +π -/γK +K - are measured. A fit to the χ c2 production and decay angular distributions yields M2=0.046±0. 010±0.013 and E3=0.015±0.008±0.018, where the first errors are statistical and the second systematic. Here M2 denotes the normalized magnetic quadrupole amplitude and E3 the normalized electric octupole amplitude. This measurement shows evidence for the existence of the M2 signal with 4.4σ statistical significance and is consistent with the charm quark having no anomalous magnetic moment. © 2011 American Physical Society.published_or_final_versio
A922 Sequential measurement of 1 hour creatinine clearance (1-CRCL) in critically ill patients at risk of acute kidney injury (AKI)
- Author
- Abbott TE
- Abdallah RI
- Abdel-Aal IR
- Abdelmonem SA
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- Kleinpell R
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- Knight LD
- Ko JI
- Ko SB
- Kobayashi A
- Koco E
- Kodate A
- Kodate A
- Kodate A
- Kokkini S
- Kolnikova I
- Komuro T
- Kondili E
- Kongpolprom N
- Kooner G
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- Kosuk ME
- Kotsopoulos A
- Kou PS
- Kouatchet A
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- Kox M
- Kraegpoeth A
- Krenn CG
- Krishna B
- Kristof J
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- Kruger A
- Krüger A
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- Ku NS
- Kubik M
- Kubota K
- Kuebler WM
- Kulaga EV
- Kulkarni AP
- Kumari BK
- Kumbamu A
- Kunze-Szikszay N
- Kurmukov IA
- Kurth T
- Kurtz P
- Kurtz P
- Kwon HM
- Kwon HM
- Kwon WY
- Kwon WY
- Kwon WY
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- Kyle UG
- Kyle UG
- Labaune MA
- Labra C
- Lacerda P
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- Lafaurie M
- Lafuente E
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- Lagos R
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- Latini R
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- Leonard H
- Leone M
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- Lerma FA
- Lesmes SP
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- Lesmes SP
- Lesmes SP
- Lesmes SP
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- Lheureux O
- Lheureux O
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- Lichtenstein D
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- Lin KC
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- Lin PH
- Lin SC
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- Lin WC
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- Lischinsky A
- Lissonde F
- Lissonde F
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- Liu CP
- Liu CP
- Liu CP
- Liu CP
- Liu D
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- Llorente B
- Llorente MÁ
- Lobato MS
- Lobo-Civico A
- Loizou C
- Lombardo MD
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- Lopez R
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- Lortat-Jacob B
- Lortat-Jacob B
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- Louf-Durier A
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- Lukaszewicz AC
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- MacKay A
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- Mackey G
- MacPhee I
- Macrì M
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- Maekawa K
- Maekawa K
- Maekawa K
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- Maghsoudi B
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- Magnoni S
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- Maistry N
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- Marcos-Zambrano LJ
- Mariani M
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- Martínez-Carmona JF
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- Melo N
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- Menendez R
- Mengelle C
- Mercat A
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- Mergulhão PJ
- Merino-Vega D
- Messenger D
- Mezidi M
- Mezidi M
- Michel L
- Midwinter MJ
- Mignot T
- Miguelena PR
- Mihara Y
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- Olaechea P
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- Spadaro S
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- Spazzadeschi A
- Spijkstra JJ
- Spronk PE
- Spronk PE
- Sprung CL
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- Stamm J
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- Stocchetti N
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- Stretti F
- Struijs A
- Stubbs C
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- Su L
- Su PL
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- Suchomel P
- Suh GJ
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- Tabatabaei HR
- Tabei SH
- Taccone F
- Taccone FS
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- Taccone FS
- Taccone FS
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- Taggu A
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- Takeda M
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- Takei T
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- Tamura T
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- Tang KB
- Tang LK
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- Tapponnier R
- Tapponnier R
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- Temprano-Gómez I
- Tena SA
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- Terzi N
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- Terzi N
- Terzi N
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- Timsit JF
- Tirkkonen J
- Tirumala S
- Tjepkema-Cloostermans MC
- Tobar M
- Tofiño AL
- Toh CH
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- Tomas E
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- Tonetti T
- Tonetti T
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- Tormos P
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- Torrance HD
- Torrent RL
- Torrent RL
- Torres A
- Torres E
- Torres JC
- Torriglia F
- Torriglia F
- Torriglia F
- Torsvik M
- Tosi F
- Touratier S
- Touw HR
- Toval S
- Tran N
- Trapp O
- Travierso C
- Travieso PM
- Traynor T
- Trefler S
- Trenado J
- Trenado J
- Treso-Geira M
- Trifan B
- Triulzi F
- Troeltzsch M
- Troncoso I
- Trouiller P
- Tseng CJ
- Tsirigotis P
- Tsukahara K
- Tsunano Y
- Tsunoda M
- Tsunoda M
- Tsutui T
- Tucci MR
- Tudor BA
- Tuinman PR
- Tullo L
- Turel M
- Turon R
- Twisk JW
- Törnblom S
- Ugawa T
- Ujike Y
- Ulla DV
- Ullman A
- Unal M
- Urbanaviciute I
- Uriona S
- Urli T
- Usón MC
- Vaahersalo J
- Vaara S
- Vaid N
- Vakalos A
- Valbuena BL
- Valbuena BL
- Valeiras-Valero A
- Vallecoccia MS
- Vallejo-Báez J
- Vallverdu M
- Vallverdu M
- Vallverdú I
- Vallés J
- van den Boogaard M
- van der Heiden ES
- van der Hoeven JG
- van der Hoeven JG
- van der Voort PH
- van Galen T
- van Ieperen SN
- Van Logten T
- van Nes M
- van Putten MJ
- van Thiel RJ
- van Wijk A
- Vandijck D
- Vaneker I
- Vanhuyse F
- Vaporidi K
- Vaquerizo C
- Varas GM
- Varas JL
- Varea MM
- Vargiolu A
- Varma A
- Varpula T
- Vatsik MV
- Vazquez D
- Vedage D
- Vega LM
- Veigas P
- Vela JL
- Velasquez T
- Venkatesan K
- Venn R
- Venn R
- Venot M
- Venrdramin A
- Ventura-Rosado A
- Vergani G
- Verginella F
- Verhaeghe R
- Verhage R
- Vermeir P
- Veronesi M
- Vezzani A
- Vezzani A
- Vianna G
- Viciana R
- Vidal A
- Vidal MV
- Vidal MV
- Viegas E
- Vieillard-Baron A
- Vieira JE
- Viera MA
- Viera MA
- Vigne C
- Villa G
- Villa P
- Villalba D
- Villamizar PR
- Villamizar PR
- Villanova M
- Villard I
- Villarreal E
- Villarreal E
- Vincent B
- Vincent JL
- Vincent JL
- Vincent JL
- Vincent JL
- Vincent JL
- Vincent JL
- Vincent JL
- Vinje LJ
- Vinsonneau C
- Vitaller S
- Vittone F
- Vogelaers D
- Voiriot G
- Volker T
- Volta CA
- Volta CA
- Vondrakova D
- Vondrakova D
- Vondrakova D
- Vong LV
- Vourli S
- Vrettou C
- Vucic M
- Vázquez CF
- Vázquez CF
- Wada T
- Wada T
- Wada T
- Wada T
- Waldauf P
- Wand S
- Wang CH
- Wang H
- Wann SR
- Wann SR
- Wann SR
- Wann SR
- Wathanawatthu T
- Wee S
- Welte T
- Welters I
- Wetz A
- Weyer CM
- White C
- Wiesner O
- Wijayatilake DS
- Wildenberg L
- Wilks M
- Wilson ME
- WIND study group
- WIND study group
- WIND study group
- Winder-Rhodes S
- Witter T
- Wolf M
- Wolff M
- Wong Y
- Wood B
- Wood CA
- Wood D
- Wood M
- Wray J
- Xie Z
- Xini A
- Xini A
- Xiol EA
- Xu M
- Yager T
- Yaguchi A
- Yaguchi A
- Yamaguchi O
- Yamaguchi O
- Yamaguchi Y
- Yamaguchi Y
- Yamamoto H
- Yamamoto N
- Yaman G
- Yamashita K
- Yamazaki A
- Yan WW
- Yan WW
- Yang JH
- Yang JS
- Yang YL
- Yasuda H
- Yatabe T
- Yebenes JC
- Yeh YC
- Yemets H
- Yergaliyeva A
- Yılmaz G
- Yilmazer F
- Yodice P
- Yokoyama M
- Yonis H
- Yonis H
- Yonis H
- Yoon SZ
- Yoruk F
- Yoshida K
- Yoshida T
- Yoshida T
- Yoshida T
- Yoshida T
- Yoshihiro S
- Yoshitake E
- You KM
- Youn AM
- Young A
- Yu KM
- Yumoto T
- Yuzawa J
- Yuzawa J
- Zabaletta WJ
- Zabini D
- Zahorec M
- Zaien I
- Zakynthinos S
- Zanello M
- Zani D
- Zarantonello F
- Zayas B
- Zepeda EM
- Zeroual N
- Zerva L
- Zhang J
- Zhou JC
- Zhou JC
- Zhou JX
- Zhovnir V
- Zibandah N
- Zijlstra F
- Zimmerman J
- Zogheib E
- Zogheib E
- Zogheib E
- Zullino V
- Zwaag J
- Zýková I
- Álvarez JT
- Álvarez-Lerma F
- Publication venue
- 'Springer Science and Business Media LLC'
- Publication date
- 01/01/2016
- Field of study
Meeting abstrac
Investigation on Photovoltaic Performance based on Matchstick-Like Cu2S–In2S3Heterostructure Nanocrystals and Polymer
- Author
- Publication venue
- Springer
- Publication date
- 01/01/2008
- Field of study
In this paper, we synthesized a novel type II cuprous sulfide (Cu2S)–indium sulfide (In2S3) heterostructure nanocrystals with matchstick-like morphology in pure dodecanethiol. The photovoltaic properties of the heterostructure nanocrystals were investigated based on the blends of the nanocrystals and poly(2-methoxy-5-(2′-ethylhexoxy)-p-phenylenevinylene) (MEH-PPV). In comparison with the photovoltaic properties of the blends of Cu2S or In2S3nanocrystals alone and MEH-PPV, the power conversion efficiency of the hybrid device based on blend of Cu2S–In2S3and MEH-PPV is enhanced by ~3–5 times. This improvement is consistent with the improved exciton dissociation or separation and better charge transport abilities in type II heterostructure nanocrystals
First observation of the decays χcJ→π0π0π0π0
- Author
- Ablikim M
- Achasov MN
- An L
- An Q
- An ZH
- Bai JZ
- Baldini R
- Ban Y
- Becker J
- Berger N
- Bertani M
- Bian JM
- Boyko I
- Briere RA
- Bytev V
- Cai X
- Cao GF
- Cao XX
- Chang JF
- Chelkov G
- Chen G
- Chen HS
- Chen JC
- Chen ML
- Chen SJ
- Chen Y
- Chen YB
- Cheng HP
- Chu YP
- CroninHennessy D
- Dai HL
- Dai JP
- Dedovich D
- Deng ZY
- Denysenko I
- Destefanis M
- Ding Y
- Dong LY
- Dong MY
- Du SX
- Duan MY
- Fan RR
- Fang J
- Fang SS
- Feldbauer F
- Feng CQ
- Fu CD
- Fu JL
- Gao Y
- Geng C
- Goetzen K
- Gong WX
- Greco M
- Grishin S
- Gu MH
- Gu YT
- Guan YH
- Guo AQ
- Guo LB
- Guo YP
- Hao XQ
- Harris FA
- He KL
- He M
- He ZY
- Heng YK
- Hou ZL
- Hu HM
- Hu JF
- Hu T
- Huang B
- Huang GM
- Huang JS
- Huang XT
- Huang YP
- Hussain T
- Ji CS
- Ji Q
- Ji XB
- Ji XL
- Jia LK
- Jiang LL
- Jiang XS
- Jiao JB
- Jiao Z
- Jin DP
- Jin S
- Jing FF
- Kavatsyuk M
- Komamiya S
- Kuehn W
- Lange JS
- Leung JKC
- Li C
- Li C
- Li DM
- Li F
- Li G
- Li HB
- Li JC
- Li L
- Li NB
- Li QJ
- Li WD
- Li WG
- Li XL
- Li XN
- Li XQ
- Li XR
- Li ZB
- Liang H
- Liang YF
- Liang YT
- Liao GR
- Liao XT
- Liu BJ
- Liu BJ
- Liu CL
- Liu CX
- Liu CY
- Liu F
- Liu F
- Liu FH
- Liu GC
- Liu H
- Liu HB
- Liu HM
- Liu HW
- Liu JP
- Liu K
- Liu KY
- Liu Q
- Liu SB
- Liu X
- Liu XH
- Liu Y
- Liu YB
- Liu YW
- Liu ZA
- Liu ZQ
- Loehner H
- Lu GR
- Lu HJ
- Lu JG
- Lu QW
- Lu XR
- Lu YP
- Luo CL
- Luo MX
- Luo T
- Luo XL
- Ma CL
- Ma FC
- Ma HL
- Ma QM
- Ma T
- Ma X
- Ma XY
- Maggiora M
- Malik QA
- Mao H
- Mao YJ
- Mao ZP
- Messchendorp JG
- Min J
- Mitchell RE
- Mo XH
- Motzko C
- Muchnoi NY
- Nefedov Y
- Ning Z
- Olsen SL
- Ouyang Q
- Pacetti S
- Pelizaeus M
- Peters K
- Ping JL
- Ping RG
- Poling R
- Pun CSJ
- Qi M
- Qian S
- Qiao CF
- Qin XS
- Qiu JF
- Rashid KH
- Rong G
- Ruan XD
- Sarantsev A
- Schulze J
- Shao M
- Shen CP
- Shen XY
- Sheng HY
- Shepherd MR
- Song XY
- Sonoda S
- Spataro S
- Spruck B
- Sun DH
- Sun GX
- Sun JF
- Sun SS
- Sun XD
- Sun YJ
- Sun YZ
- Sun ZJ
- Sun ZT
- Tang CJ
- Tang X
- Tang XF
- Tian HL
- Toth D
- Varner GS
- Wan X
- Wang BQ
- Wang K
- Wang LL
- Wang LS
- Wang M
- Wang P
- Wang PL
- Wang Q
- Wang SG
- Wang XL
- Wang YD
- Wang YF
- Wang YQ
- Wang Z
- Wang ZG
- Wang ZY
- Wei DH
- Wen SP
- Wiedner U
- Wu LH
- Wu N
- Wu W
- Wu Z
- Xiao ZJ
- Xie YG
- Xu GF
- Xu GM
- Xu H
- Xu Y
- Xu ZR
- Xu ZZ
- Xue Z
- Yan L
- Yan WB
- Yan YH
- Yang HX
- Yang M
- Yang T
- Yang Y
- Yang YX
- Ye M
- Ye MH
- Yu BX
- Yu CX
- Yu L
- Yuan CZ
- Yuan WL
- Yuan Y
- Zafar AA
- Zallo A
- Zeng Y
- Zhang BX
- Zhang BY
- Zhang CC
- Zhang DH
- Zhang HH
- Zhang HY
- Zhang J
- Zhang JW
- Zhang JY
- Zhang JZ
- Zhang L
- Zhang SH
- Zhang TR
- Zhang XJ
- Zhang XY
- Zhang Y
- Zhang YH
- Zhang ZP
- Zhang ZY
- Zhao G
- Zhao HS
- Zhao J
- Zhao J
- Zhao L
- Zhao L
- Zhao MG
- Zhao Q
- Zhao SJ
- Zhao TC
- Zhao XH
- Zhao YB
- Zhao ZG
- Zhao ZL
- Zhemchugov A
- Zheng B
- Zheng JP
- Zheng YH
- Zheng ZP
- Zhong B
- Zhong J
- Zhong L
- Zhou L
- Zhou XK
- Zhou XR
- Zhu C
- Zhu K
- Zhu KJ
- Zhu SH
- Zhu XL
- Zhu XW
- Zhu YS
- Zhu ZA
- Zhuang J
- Zou BS
- Zou JH
- Zuo JX
- Zweber P
- Publication venue
- 'American Physical Society (APS)'
- Publication date
- 01/01/2011
- Field of study
We present a study of the P-wave spin-triplet charmonium χ cJ decays (J=0, 1, 2) into π0π0π0π0. The analysis is based on 106×106 ψ⊃′ decays recorded with the BESIII detector at the BEPCII electron positron collider. The decay into the π0π0π0π0 hadronic final state is observed for the first time. We measure the branching fractions B(χ c0→π0π0π0π0)=(3.34±0. 06±0.44)×10⊃-3, B(χ c1→π0π0π0π0) =(0.57±0.03±0.08)×10⊃-3, and B(χ c2→π0π0π0π0)=(1.21±0.05±0.16) ×10⊃-3, where the uncertainties are statistical and systematical, respectively. © 2011 American Physical Society.published_or_final_versio
Branching fraction measurements of χc0 and χc2 to π0π0 and ηη
- Author
- Ablikim M
- Achasov MN
- An L
- An Q
- An ZH
- Bai JZ
- Ban Y
- Berger N
- Bian JM
- Boyko I
- Briere RA
- Bytev V
- Cai X
- Cao GF
- Cao XX
- Chang JF
- Chelkov G
- Chen G
- Chen HS
- Chen JC
- Chen LP
- Chen ML
- Chen P
- Chen SJ
- Chen YB
- Chu YP
- CroninHennessy D
- Dai HL
- Dai JP
- Dedovich D
- Deng ZY
- Denysenko I
- Destefanis M
- Ding Y
- Dong LY
- Dong MY
- Du SX
- Duan MY
- Fang J
- Feng CQ
- Fu CD
- Fu JL
- Gao Y
- Geng C
- Goetzen K
- Gong WX
- Greco M
- Grishin S
- Gu YT
- Guo AQ
- Guo LB
- Guo YP
- Han SQ
- Harris FA
- He KL
- He M
- He ZY
- Heng YK
- Hou ZL
- Hu HM
- Hu JF
- Hu T
- Hu XW
- Huang B
- Huang GM
- Huang JS
- Huang XT
- Huang YP
- Ji CS
- Ji Q
- Ji XB
- Ji XL
- Jia LK
- Jiang LL
- Jiang XS
- Jiao JB
- Jin DP
- Jin S
- Komamiya S
- Kuehn W
- Lange S
- Leung JKC
- Li C
- Li C
- Li DM
- Li F
- Li G
- Li HB
- Li J
- Li JC
- Li L
- Li L
- Li QJ
- Li WD
- Li WG
- Li XL
- Li XN
- Li XQ
- Li XR
- Li YX
- Li ZB
- Liang H
- Liang TR
- Liang YF
- Liang YT
- Liao GR
- Liao XT
- Liu BJ
- Liu CL
- Liu CX
- Liu CY
- Liu F
- Liu F
- Liu FH
- Liu GC
- Liu H
- Liu HB
- Liu HM
- Liu HW
- Liu J
- Liu JP
- Liu K
- Liu KY
- Liu Q
- Liu SB
- Liu XH
- Liu Y
- Liu YB
- Liu YF
- Liu YW
- Liu ZA
- Lu GR
- Lu JG
- Lu QW
- Lu XR
- Lu YP
- Luo CL
- Luo MX
- Luo T
- Luo XL
- Ma CL
- Ma FC
- Ma HL
- Ma QM
- Ma X
- Ma XY
- Maggiora M
- Mao YJ
- Mao ZP
- Min J
- Mo XH
- Muchnoi NYu
- Nefedov Y
- Ning FP
- Olsen SL
- Ouyang Q
- Pelizaeus M
- Peters K
- Ping JL
- Ping RG
- Poling R
- Pun CSJ
- Qi M
- Qian S
- Qiao CF
- Qiu JF
- Rong G
- Ruan XD
- Sarantsev A
- Shao M
- Shen CP
- Shen XY
- Sheng HY
- Sonoda S
- Spataro S
- Spruck B
- Sun DH
- Sun GX
- Sun JF
- Sun SS
- Sun XD
- Sun YJ
- Sun YZ
- Sun ZJ
- Sun ZT
- Tang CJ
- Tang X
- Tang XF
- Tian HL
- Toth D
- Varner GS
- Wan X
- Wang BQ
- Wang JK
- Wang K
- Wang LL
- Wang LS
- Wang P
- Wang PL
- Wang Q
- Wang SG
- Wang XD
- Wang XL
- Wang YD
- Wang YF
- Wang YQ
- Wang Z
- Wang ZG
- Wang ZY
- Wei DH
- Wen SP
- Wiedner U
- Wu LH
- Wu N
- Wu W
- Wu YM
- Wu Z
- Xiao ZJ
- Xie YG
- Xu GF
- Xu GM
- Xu H
- Xu M
- Xu M
- Xu XP
- Xu Y
- Xu ZZ
- Xue Z
- Yan L
- Yan WB
- Yan YH
- Yang HX
- Yang M
- Yang P
- Yang SM
- Yang YX
- Ye M
- Ye MH
- Yu BX
- Yu CX
- Yu L
- Yuan CZ
- Yuan Y
- Zeng Y
- Zhang BX
- Zhang BY
- Zhang CC
- Zhang DH
- Zhang HH
- Zhang HY
- Zhang JW
- Zhang JY
- Zhang JZ
- Zhang L
- Zhang SH
- Zhang XY
- Zhang Y
- Zhang YH
- Zhang ZP
- Zhao C
- Zhao HS
- Zhao J
- Zhao J
- Zhao L
- Zhao L
- Zhao MG
- Zhao Q
- Zhao SJ
- Zhao TC
- Zhao XH
- Zhao YB
- Zhao ZG
- Zhemchugov A
- Zheng B
- Zheng JP
- Zheng YH
- Zheng ZP
- Zhong B
- Zhong J
- Zhou L
- Zhou ZL
- Zhu C
- Zhu K
- Zhu KJ
- Zhu QM
- Zhu XW
- Zhu YS
- Zhu ZA
- Zhuang J
- Zou BS
- Zou JH
- Zuo JX
- Zweber P
- Publication venue
- 'American Physical Society (APS)'
- Publication date
- 01/01/2010
- Field of study
Using a sample of 1.06×108 ψ ′ decays collected by the BESIII detector, χc0 and χc2 decays into π0π0 and ηη are studied. The branching fraction results are Br(χc0→π 0π0)=(3.23±0.03±0.23±0.14)×10 -3, Br(χc2→π0π0)=(8.8±0.2±0.6±0.4)×10 -4, Br(χc0→ηη)=(3.44±0.10±0. 24±0.2)×10 -3, and Br(χc2→ηη)=(6. 5±0.4±0.5±0.3)×10 -4, where the uncertainties are statistical, systematic due to this measurement, and systematic due to the branching fractions of ψ ′→ γχcJ. The results provide information on the decay mechanism of χc states into pseudoscalars. © 2010 The American Physical Society.published_or_final_versio
Purinergic signalling links mechanical breath profile and alveolar mechanics with the pro-inflammatory innate immune response causing ventilation-induced lung injury
- Author
- A Ben Addi
- A Brandao-Burch
- A Calkovska
- A Chander
- A Felsch
- A Kawano
- A Mishra
- A Ohta
- A Protti
- A Protti
- A Protti
- A Protti
- A Pupovac
- A Pupovac
- A Surprenant
- A Verkhratsky
- A Wollner
- AA Erdmann
- AA Khine
- AA Kroon
- AA Link
- AM Gutierrez
- AM Gutierrez
- AS Patel
- AS Slutsky
- AW Thille
- AW Thille
- B Csoka
- B Csoka
- B Csoka
- B Csoka
- B Emr
- B Koscso
- B Sadowitz
- BA Walker
- BH Lee
- BJ Gu
- BN Cronstein
- BQ Shen
- C Cekic
- C Coddou
- C Oury
- C Torre-Minguela de
- CJ Ferrante
- CM Aherne
- CM Lappas
- CM Wang
- CS Moore
- CY Castro
- D Dreyfuss
- D Hoeven van der
- D Liang
- DA Vignali
- Djo Hasan
- DM Grbic
- DW Hoskin
- E Bulanova
- E Dona
- E Krump
- E Krump
- E Latz
- E Maidji
- E Morschl
- E Venereau
- EK Jo
- F Aeffner
- F Aeffner
- F Alkayed
- F Aswad
- F Bauernfeind
- F Figueiro
- F Scheuplein
- F Wilkin
- FR Rose
- FS Calandrino Jr
- G Bellingan
- G Burnstock
- G Burnstock
- G Burnstock
- G Dahl
- G Deng
- G Hasko
- G Hasko
- G Joos
- G Nieman
- G Vanderstocken
- Gary F. Nieman
- GF Nieman
- GW Sullivan
- GW Sullivan
- H Bachofen
- H Karmouty-Quintana
- H Kawamura
- H Matsuyama
- H Sakaki
- H Sakaki
- H Satonaka
- H So
- H Tozaki-Saitoh
- H Uratsuji
- H Zhong
- HA Belete
- HK Eltzschig
- HK Eltzschig
- I Feoktistov
- I Wyszogrodski
- J Kiss
- J Niemela
- J Retamal
- J Richter
- J Steinberg
- J Zhu
- JA Lorente
- JA Whitsett
- JA Whitsett
- JE Salmon
- JF Tomashefski Jr
- JG Zhang
- JL Chunn
- JL Chunn
- JM Wilson
- JS Cadieux
- JY Lee
- K Furuya
- K Inoue
- K Kunzelmann
- K Kunzelmann
- K Moissoglu
- K Nowrin
- K Ohsawa
- K Schroder
- K Wilhelm
- KC Kao
- KE Barletta
- KE Thompson
- KE Wolk
- KJ Wareham
- KR Short
- KR Vaughan
- KS Ravichandran
- L Airas
- L Chen
- L Chen
- L Gattinoni
- L Tweedy
- L Tweedy
- L Weyden van der
- L Yip
- LM Kreckler
- LP Qu
- M Barbera-Cremades
- M Faigle
- M Idzko
- M Karmakar
- M Kollisch-Singule
- M Kollisch-Singule
- M Kollisch-Singule
- M Manohar
- M Martinez Sarrasague
- M Nakano
- M Proietti
- M Schnurr
- M Schnurr
- M Thiel
- M Thiel
- M Tsukimoto
- MB Grant
- ME Surette
- MO Barrett
- MS Alam
- N Flamand
- N Flamand
- N Lou
- N Morioka
- N Vazquez-Villoldo
- NJ Gross
- NM Habashi
- P Dietl
- P Miklavc
- P Sil
- Paul Blankman
- PE Zarek
- PF Wilkinson
- PL Andrews
- PR Rocco
- R Anderson
- R Li
- RA North
- RD Fields
- RM Sweeney
- S Hubert
- S Majumdar
- S Meis
- S Nylander
- S Roy
- S Ryzhov
- S Zalavary
- S Zalavary
- SE Haynes
- SJ Verbrugge
- SK Roy
- SM Hassanian
- SO Suadicani
- SP Albert
- SR McColl
- SS Visser
- SV Jain
- SV Novitskiy
- SW Huang
- T Arase
- T Eckle
- T Eckle
- T Eleftheriadis
- T Kimura
- T Luna-Gomes
- T Muller
- T Muller
- T Ohtsuka
- T Ren
- T Volckaert
- T Woehrle
- T Xu
- V Mirakaj
- X Huang
- X Xu
- XJ Chen
- Y Chen
- Y Fukuda
- Y Inoue
- Y Irino
- Y Li
- Y Xu
- Y Zhang
- YW Liu
- Z Yan
- ZC Chroneos
- ZH Nemeth
- Publication venue
- 'Springer Science and Business Media LLC'
- Publication date
- 01/01/2017
- Field of study
Severe pulmonary infection or vigorous cyclic deformation of the alveolar epithelial type I (AT I) cells by mechanical ventilation leads to massive extracellular ATP release. High levels of extracellular ATP saturate the ATP hydrolysis enzymes CD39 and CD73 resulting in persistent high ATP levels despite the conversion to adenosine. Above a certain level, extracellular ATP molecules act as danger-associated molecular patterns (DAMPs) and activate the pro-inflammatory response of the innate immunity through purinergic receptors on the surface of the immune cells. This results in lung tissue inflammation, capillary leakage, interstitial and alveolar oedema and lung injury reducing the production of surfactant by the damaged AT II cells and deactivating the surfactant function by the concomitant extravasated serum proteins through capillary leakage followed by a substantial increase in alveolar surface tension and alveolar collapse. The resulting inhomogeneous ventilation of the lungs is an important mechanism in the development of ventilation-induced lung injury. The high levels of extracellular ATP and the upregulation of ecto-enzymes and soluble enzymes that hydrolyse ATP to adenosine (CD39 and CD73) increase the extracellular adenosine levels that inhibit the innate and adaptive immune responses rendering the host susceptible to infection by invading microorganisms. Moreover, high levels of extracellular adenosine increase the expression, the production and the activation of pro-fibrotic proteins (such as TGF-β, α-SMA, etc.) followed by the establishment of lung fibrosis
Study of a00(980)-f0(980) mixing
- Author
- Ablikim M
- Achasov MN
- An L
- An Q
- An ZH
- Bai JZ
- Baldini R
- Ban Y
- Becker J
- Berger N
- Bertani M
- Bian JM
- Boyko I
- Briere RA
- Bytev V
- Cai X
- Cao GF
- Cao XX
- Chang JF
- Chelkov G
- Chen G
- Chen HS
- Chen JC
- Chen ML
- Chen SJ
- Chen Y
- Chen YB
- Cheng HP
- Chu YP
- CroninHennessy D
- Dai HL
- Dai JP
- Dedovich D
- Deng ZY
- Denysenko I
- Destefanis M
- Ding Y
- Dong LY
- Dong MY
- Du SX
- Duan MY
- Fan RR
- Fang J
- Fang SS
- Feng CQ
- Fu CD
- Fu JL
- Gao Y
- Geng C
- Goetzen K
- Gong WX
- Greco M
- Grishin S
- Gu MH
- Gu YT
- Guan YH
- Guo AQ
- Guo LB
- Guo YP
- Hao XQ
- Harris FA
- He KL
- He M
- He ZY
- Heng YK
- Hou ZL
- Hu HM
- Hu JF
- Hu T
- Huang B
- Huang GM
- Huang JS
- Huang XT
- Huang YP
- Hussain T
- Ji CS
- Ji Q
- Ji XB
- Ji XL
- Jia LK
- Jiang LL
- Jiang XS
- Jiao JB
- Jiao Z
- Jin DP
- Jin S
- Jing FF
- Kavatsyuk M
- Komamiya S
- Kuehn W
- Lange JS
- Leung JKC
- Li C
- Li C
- Li DM
- Li F
- Li G
- Li HB
- Li JC
- Li L
- Li NB
- Li QJ
- Li WD
- Li WG
- Li XL
- Li XN
- Li XQ
- Li XR
- Li ZB
- Liang H
- Liang YF
- Liang YT
- Liao GR
- Liao XT
- Liu BJ
- Liu BJ
- Liu CL
- Liu CX
- Liu CY
- Liu F
- Liu F
- Liu FH
- Liu GC
- Liu H
- Liu HB
- Liu HM
- Liu HW
- Liu JP
- Liu K
- Liu KY
- Liu Q
- Liu SB
- Liu X
- Liu XH
- Liu Y
- Liu YB
- Liu YW
- Liu ZA
- Liu ZQ
- Loehner H
- Lu GR
- Lu HJ
- Lu JG
- Lu QW
- Lu XR
- Lu YP
- Luo CL
- Luo MX
- Luo T
- Luo XL
- Ma CL
- Ma FC
- Ma HL
- Ma QM
- Ma T
- Ma X
- Ma XY
- Maggiora M
- Malik QA
- Mao H
- Mao YJ
- Mao ZP
- Messchendorp JG
- Min J
- Mitchell RE
- Mo XH
- Muchnoi NYu
- Nefedov Y
- Ning Z
- Olsen SL
- Ouyang Q
- Pacetti S
- Pelizaeus M
- Peters K
- Ping JL
- Ping RG
- Poling R
- Pun CSJ
- Qi M
- Qian S
- Qiao CF
- Qin XS
- Qiu JF
- Rashid KH
- Rong G
- Ruan XD
- Sarantsev A
- Schulze J
- Shao M
- Shen CP
- Shen XY
- Sheng HY
- Shepherd MR
- Song XY
- Sonoda S
- Spataro S
- Spruck B
- Sun DH
- Sun GX
- Sun JF
- Sun SS
- Sun XD
- Sun YJ
- Sun YZ
- Sun ZJ
- Sun ZT
- Tang CJ
- Tang X
- Tang XF
- Tian HL
- Toth D
- Varner GS
- Wan X
- Wang BQ
- Wang K
- Wang LL
- Wang LS
- Wang M
- Wang P
- Wang PL
- Wang Q
- Wang SG
- Wang XL
- Wang YD
- Wang YF
- Wang YQ
- Wang Z
- Wang ZG
- Wang ZY
- Wei DH
- Wen SP
- Wiedner U
- Wu LH
- Wu N
- Wu W
- Wu Z
- Xiao ZJ
- Xie YG
- Xu GF
- Xu GM
- Xu H
- Xu Y
- Xu ZR
- Xu ZZ
- Xue Z
- Yan L
- Yan WB
- Yan YH
- Yang HX
- Yang M
- Yang T
- Yang Y
- Yang YX
- Ye M
- Ye MH
- Yu BX
- Yu CX
- Yu L
- Yuan CZ
- Yuan WL
- Yuan Y
- Zafar AA
- Zallo A
- Zeng Y
- Zhang BX
- Zhang BY
- Zhang CC
- Zhang DH
- Zhang HH
- Zhang HY
- Zhang J
- Zhang JW
- Zhang JY
- Zhang JZ
- Zhang L
- Zhang SH
- Zhang TR
- Zhang XJ
- Zhang XY
- Zhang Y
- Zhang YH
- Zhang ZP
- Zhang ZY
- Zhao G
- Zhao HS
- Zhao J
- Zhao J
- Zhao L
- Zhao L
- Zhao MG
- Zhao Q
- Zhao SJ
- Zhao TC
- Zhao XH
- Zhao YB
- Zhao ZG
- Zhao ZL
- Zhemchugov A
- Zheng B
- Zheng JP
- Zheng YH
- Zheng ZP
- Zhong B
- Zhong J
- Zhong L
- Zhou L
- Zhou XK
- Zhou XR
- Zhu C
- Zhu K
- Zhu KJ
- Zhu SH
- Zhu XL
- Zhu XW
- Zhu YS
- Zhu ZA
- Zhuang J
- Zou BS
- Zou JH
- Zuo JX
- Zweber P
- Publication venue
- 'American Physical Society (APS)'
- Publication date
- 01/01/2011
- Field of study
Using samples of 2.25×108 J/ψ events and 1.06×108 ψ ′ events collected with the BES III detector, we study the f 0(980)→a00(980) and a00(980)→f 0(980) transitions in the processes J/ψ→φf 0(980) →φa00(980) and χ c1→π0a00(980)→π0f 0(980), respectively. Evidence for f 0(980)→a00(980) is found with a significance of 3.4σ, while in the case of a00(980)→f 0(980) transition, the significance is 1.9σ. Measurements and upper limits of both branching ratios and mixing intensities are determined. © 2011 American Physical Society.published_or_final_versio
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