109 research outputs found
Particle and Antiparticle sectors in DSR1 and kappa-Minkowski space-time
In this paper we explore the problem of antiparticles in DSR1 and
-Minkowski space-time following three different approaches inspired by
the Lorentz invariant case: a) the dispersion relation, b) the Dirac equation
in space-time and c) the Dirac equation in momentum space. We find that it is
possible to define a map which gives the antiparticle sector from the
negative frequency solutions of the wave equation. In -Poincar\'e, the
corresponding map is the antipodal mapping, which is different from
. The difference is related to the composition law, which is crucial
to define the multiparticle sector of the theory. This discussion permits to
show that the energy of the antiparticle in DSR is the positive root of the
dispersion relation, which is consistent with phenomenological approaches.Comment: 15 pages, no figures, some references added, typos correcte
Physics of the universe transparency in a deformed kinematics
We present a first study of the possible effects of a relativistic deformation of special relativity in the recent observations of very high-energy gamma rays by the LHAASO experiment, which has opened a new phenomenological window to study deformations in the kinematics of special relativity. Our analysis of the interaction of high-energy photons with the CMB background complements theoretical studies based on Lorentz invariance violation scenarios, while making predictions that would allow one to distinguish between a violation and a deformation of the symmetries of special relativity
A922 Sequential measurement of 1 hour creatinine clearance (1-CRCL) in critically ill patients at risk of acute kidney injury (AKI)
Meeting abstrac
Analysis of events with b-jets and a pair of leptons of the same charge in pp collisions at √s=8 TeV with the ATLAS detector
An analysis is presented of events containing jets including at least one b-tagged jet, sizeable missing transverse momentum, and at least two leptons including a pair of the same electric charge, with the scalar sum of the jet and lepton transverse momenta being large. A data sample with an integrated luminosity of 20.3 fb−1 of pp collisions at √s=8 TeV recorded by the ATLAS detector at the Large Hadron Collider is used. Standard Model processes rarely produce these final states, but there are several models of physics beyond the Standard Model that predict an enhanced rate of production of such events; the ones considered here are production of vector-like quarks, enhanced four-top-quark production, pair production of chiral b′-quarks, and production of two positively charged top quarks. Eleven signal regions are defined; subsets of these regions are combined when searching for each class of models. In the three signal regions primarily sensitive to positively charged top quark pair production, the data yield is consistent with the background expectation. There are more data events than expected from background in the set of eight signal regions defined for searching for vector-like quarks and chiral b′-quarks, but the significance of the discrepancy is less than two standard deviations. The discrepancy reaches 2.5 standard deviations in the set of five signal regions defined for searching for four-top-quark production. The results are used to set 95% CL limits on various models
Characterizing planetary systems with SPIRou: M-dwarf planet-search survey and the multiplanet systems GJ 876 and GJ 1148
SPIRou is a near-infrared spectropolarimeter and a high-precision
velocimeter. The SPIRou Legacy Survey collected data from February 2019 to June
2022, half of the time devoted to a blind search for exoplanets around nearby
cool stars. The aim of this paper is to present this program and an overview of
its properties, and to revisit the radial velocity (RV) data of two multiplanet
systems, including new visits with SPIRou. From SPIRou data, we can extract
precise RVs using efficient telluric correction and line-by-line measurement
techniques, and we can reconstruct stellar magnetic fields from the collection
of polarized spectra using the Zeeman-Doppler imaging method. The stellar
sample of our blind search in the solar neighborhood, the observing strategy,
the RV noise estimates, chromatic behavior, and current limitations of SPIRou
RV measurements on bright M dwarfs are described. In addition, SPIRou data over
a 2.5-year time span allow us to revisit the known multiplanet systems GJ~876
and GJ~1148. For GJ~876, the new dynamical analysis including the four planets
is consistent with previous models and confirms that this system is deep in the
Laplace resonance and likely chaotic. The large-scale magnetic map of GJ~876
over two consecutive observing seasons is obtained and shows a dominant dipolar
field with a polar strength of 30~G, which defines the magnetic environment in
which the inner planet with a period of 1.94~d is embedded. For GJ~1148, we
refine the known two-planet model.Comment: accepted in A&
Atherosclerosis and Bone Loss in Humans–Results From Deceased Donors and From Patients Submitted to Carotid Endarterectomy
Funding: We wish to thank all the collaborators (administrative staff, nurses, etc.) of the surgery block, as well as the doctors of the vascular surgery and transplantation departments of the Hospital of Santa Maria for the availability and assistance in the collection of the samples. We also thank Sociedade Portuguesa de Reumatologia for funding with two fellowships: Fundo de Apoio à Investigação 2014 and SPR/MSD 2015. DC-F received funding from a PhD grant from Fundação para a Ciência e a Tecnologia (SFRH/BD/80940/2011).Background and Aims: Atherosclerosis and osteoporosis share common risk factors, as well as inflammatory mechanisms. Our aim was to understand how atherosclerotic lesions are related with disturbances in bone. Methods: Gene expression of pro-inflammatory and bone metabolism related proteins (IL-1β, IL-6, IL-17A, TNF, RANKL, OPG, COL1, CTSK, OCL, TRAP, CBFA1, DKK1, SOST, ADIPOQ, and ADIPOR1) were analyzed in arteries and bones from 45 deceased donors and adipose tissue was used as control. Additionally, in 139 patients with advanced atherosclerosis submitted to carotid endarterectomy we compared calcium content (Alizarin red) and plaque inflammatory scores (CD3+, CD68+, and adiponectin) of patients with normal bone mineral density (BMD) with those with low BMD and explored the associations between gene expression in atherosclerotic plaques and BMD. Serum levels of pro-inflammatory and bone related proteins were measured both in donors and patients. Associations were investigated by the Pearson or Spearman correlation tests, and multivariate regression analyzes were performed when justified. Results: Gene expression of bone remodeling and pro-inflammatory proteins correlated positively in bone and aorta, independently of age and sex of donors, but not in adipose tissue. The expression of bone formation genes was significantly higher in atheroma plaques from endarterectomized patients with normal vs. low BMD as well as inflammatory CD68+ scores, regardless of patients' age and sex, but not of body mass index. No relationship was observed between serum levels and gene expression levels of pro-inflammatory or bone remodeling proteins. Conclusions: Our results suggest that the relationship between bones and vessels in the context of atherosclerotic disease and osteoporosis may rely on the intrinsic connection between the tissues involved, independently of disease stage. Serum measurements of pro-inflammatory and bone-remodeling proteins do not accurately translate tissue pathologic processes.publishersversionpublishe
Information-Theoretic Measures and Sequential Monte Carlo Methods for Detection of Regeneration Phenomena in the Degradation of Lithium-Ion Battery Cells
Artículo de publicación ISIThis paper analyses and compares the performance
of a number of approaches implemented for the detection of
capacity regeneration phenomena (measured in ampere-hours)
in the degradation trend of energy storage devices, particularly
Lithium-Ion battery cells. All implemented approaches are based
on a combination of information-theoretic measures and sequential
Monte Carlo methods for state estimation in nonlinear,
non-Gaussian dynamic systems. Properties of information measures
are conveniently used to quantify the impact of process
measurements on the posterior probability density function of the
state, assuming that sub-optimal Bayesian estimation algorithms
(such as classic or risk-sensitive particle filters) are to be used to
obtain an empirical representation of the system uncertainty. The
proposed anomaly detection strategies are tested and evaluated
both in terms of (i) detection time (early detection) and (ii) false
alarm rates. Verification of detection schemes is performed using
simulated data for battery State-Of-Health accelerated degradation
tests, to ensure absolute knowledge on the time instant where
a regeneration phenomenon occursFONDECYT 1140774
and Innova-CORFO 12IDL2–1629
Quantum gravity phenomenology at the dawn of the multi-messenger era—A review
The exploration of the universe has recently entered a new era thanks to the multi-messenger paradigm, characterized by a continuous increase in the quantity and quality of experimental data that is obtained by the detection of the various cosmic messengers (photons, neutrinos, cosmic rays and gravitational waves) from numerous origins. They give us information about their sources in the universe and the properties of the intergalactic medium. Moreover, multi-messenger astronomy opens up the possibility to search for phenomenological signatures of quantum gravity. On the one hand, the most energetic events allow us to test our physical theories at energy regimes which are not directly accessible in accelerators; on the other hand, tiny effects in the propagation of very high energy particles could be amplified by cosmological distances. After decades of merely theoretical investigations, the possibility of obtaining phenomenological indications of Planck-scale effects is a revolutionary step in the quest for a quantum theory of gravity, but it requires cooperation between different communities of physicists (both theoretical and experimental). This review, prepared within the COST Action CA18108 “Quantum gravity phenomenology in the multi-messenger approach”, is aimed at promoting this cooperation by giving a state-of-the art account of the interdisciplinary expertise that is needed in the effective search of quantum gravity footprints in the production, propagation and detection of cosmic messengers
Relative-locality distant observers and the phenomenology of momentum-space geometry
We study the translational invariance of the relative-locality framework
proposed in arXiv:1101.0931, which had been previously established only for the
case of a single interaction. We provide an explicit example of boundary
conditions at endpoints of worldlines, which indeed ensures the desired
translational invariance for processes involving several interactions, even
when some of the interactions are causally connected (particle exchange). We
illustrate the properties of the associated relativistic description of distant
observers within the example of a -Poincar\'e-inspired momentum-space
geometry, with de Sitter metric and parallel transport governed by a non-metric
and torsionful connection. We find that in such a theory simultaneously-emitted
massless particles do not reach simultaneously a distant detector, as expected
in light of the findings of arXiv:1103.5626 on the implications of non-metric
connections. We also show that the theory admits a free-particle limit, where
the relative-locality results of arXiv:1102.4637 are reproduced. We establish
that the torsion of the -Poincar\'e connection introduces a small (but
observably-large) dependence of the time of detection, for
simultaneously-emitted particles, on some properties of the interactions
producing the particles at the source.Comment: 45 pages, 10 figure
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