9 research outputs found

    用于生命之树重建的数据集

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    由中国科学院计算机网络信息中心、中国科学院植物研究所、深圳市中国科学院仙湖植物园"三方两地"共同合作研究建设的"达尔文树"——分子数据分析应用环境(DarwinTree——Molecular Data Analysis and Application Environment),从中国陆地植物发育系统框架的研究出发,逐步推动解决生命之树构建过程中存在的技术难题,探索利用基因和基因组信息构建生命之树的策略和方法,研究和开发DNA序列信息自动采集和生命之树自动生成技术(Automatic Reconstruction of The Tree of Life),建立生命之树信息平台及其利用体系,为最终在我国建立具有国际影响的,能很好地兼容物种分类、地理分布、形态性状、化石信息以及DNA信息的物种库(Species Bank)创造条件。DarwinTree旨在为科研人员提供数据和分析并举的工作平台,该平台将承担数据汇集和面向实际科研工作应用的双重作用。本文发布的数据集包括:(1)DarwinTree基础数据集:来自国际公共序列数据的标记处理得到的分子标记数据及其与任意阶元物种分类名称对应的统计数据集;(2)DarwinTree自测序数据集:面向中国陆地植物研究的补充测序序列数据;(3)DarwinTree中国维管植物进化数据集:已构建的中国维管植物属系统发育树的数据(Generic tree of Chinese vascular plants)

    Amplitude analysis of the decays D0π+ππ+πD^0\rightarrow\pi^+\pi^-\pi^+\pi^- and D0π+ππ0π0D^0\rightarrow\pi^+\pi^-\pi^0\pi0

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    Measurement of integrated luminosity of data collected at 3.773 GeV by BESIII from 2021 to 2024*

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    Determination of the number of ψ(3686) events taken at BESIII

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    The number of ψ(3686) events collected by the BESIII detector during the 2021 run period is determined to be (2259.3±11.1)×106 by counting inclusive ψ(3686) hadronic events. The uncertainty is systematic and the statistical uncertainty is negligible. Meanwhile, the numbers of ψ(3686) events collected during the 2009 and 2012 run periods are updated to be (107.7±0.6)×106 and (345.4±2.6)×106, respectively. Both numbers are consistent with the previous measurements within one standard deviation. The total number of ψ(3686) events in the three data samples is (2712.4±14.3)×10^

    Measurement of integrated luminosity of data collected at 3.773 GeV by BESIII from 2021 to 2024

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    We present a measurement of the integrated luminosity e+e- of collision data collected by the BESIII detector at the BEPCII collider at a center-of-mass energy of Ecm = 3.773 GeV. The integrated luminosities of the datasets taken from December 2021 to June 2022, from November 2022 to June 2023, and from October 2023 to February 2024 were determined to be 4.995±0.019 fb-1, 8.157±0.031 fb-1, and 4.191±0.016 fb-1, respectively, by analyzing large angle Bhabha scattering events. The uncertainties are dominated by systematic effects, and the statistical uncertainties are negligible. Our results provide essential input for future analyses and precision measurements
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