Measurement of the Λc+ Lifetime

被引:4
|
作者
Abudinen, F.
Aggarwal, L.
Ahmed, H.
Ahn, J. K.
Aihara, H.
Akopov, N.
Aloisio, A.
Ky, N. Anh
Asner, D. M.
Atmacan, H.
Aushev, T.
Aushev, V.
Babu, V.
Bae, H.
Bambade, P.
Banerjee, Sw.
Bansal, S.
Baudot, J.
Bauer, M.
Baur, A.
Beaubien, A.
Becker, J.
Bennett, J., V
Bernieri, E.
Bernlochner, F. U.
Bertacchi, V.
Bertemes, M.
Bertholet, E.
Bessner, M.
Bettarini, S.
Bhardwaj, V.
Bianchi, F.
Bilka, T.
Biswas, D.
Bodrov, D.
Bolz, A.
Bonvicini, G.
Bozek, A.
Bracko, M.
Branchini, P.
Briere, R. A.
Browder, T. E.
Budano, A.
Bussino, S.
Campajola, M.
Cao, L.
Casarosa, G.
Cecchi, C.
Chang, M. -C.
Chang, P.
机构
基金
欧盟地平线“2020”; 加拿大自然科学与工程研究理事会; 奥地利科学基金会; 美国国家科学基金会; 澳大利亚研究理事会; 新加坡国家研究基金会; 中国国家自然科学基金; 欧洲研究理事会; 日本学术振兴会; 以色列科学基金会;
关键词
PRECISION-MEASUREMENTS;
D O I
10.1103/PhysRevLett.130.071802
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
An absolute measurement of the A+c lifetime is reported using A+c -> pK-pi+ decays in events reconstructed from data collected by the Belle II experiment at the SuperKEKB asymmetric-energy electron-positron collider. The total integrated luminosity of the data sample, which was collected at center-of-mass energies at or near the (sic)(4S) resonance, is 207.2 fb(-1). The result, tau(Lambda(+)(c)) = 203.20 10.89 10.77 fs, where the first uncertainty is statistical and the second systematic, is the most precise measurement to date and is consistent with previous determinations.
引用
收藏
页数:7
相关论文
共 46 条
  • [11] Validating Low Frequency Measurement Capability for Multiproduct Calibrators
    Todorakev, Milen
    2024 CONFERENCE ON PRECISION ELECTROMAGNETIC MEASUREMENTS, CPEM 2024, 2024,
  • [12] Reference setup for the calibration of power transformer loss measurement systems
    Houtzager, E.
    Acanski, M.
    Rietveld, G.
    2016 CONFERENCE ON PRECISION ELECTROMAGNETIC MEASUREMENTS (CPEM 2016), 2016,
  • [13] Evaluation of Deterioration Degree of Electrical Contacts with Precise Impedance Measurement
    Fukuyama, Yasuhiro
    Toyoizumi, Jun
    Itou, Yoshitaka
    Kondo, Takaya
    Kaneko, Nobu-Hisa
    2018 CONFERENCE ON PRECISION ELECTROMAGNETIC MEASUREMENTS (CPEM 2018), 2018,
  • [14] Interferometric Measurement of the Diameter of a Silicon Sphere With a Mechanical Scanning Method
    Luo, Zhiyong
    Gu, Yingzi
    Zhang, Jitao
    Yang, Lifeng
    Guo, Ligong
    IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 2010, 59 (11) : 2991 - 2996
  • [15] Measurement of the Newtonian constant of gravitation G by precision displacement sensors
    Kawasaki, Akio
    CLASSICAL AND QUANTUM GRAVITY, 2020, 37 (07)
  • [16] Coaxial Connector Conversion Method for Traceable Scattering Parameter Measurement
    Kishikawa, Ryoko
    Nakamura, Shintaro
    Sato, Keiko
    Horibe, Masahiro
    IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 2017, 66 (06) : 1566 - 1571
  • [17] Automated Leakage Current Measurement Capability for Programmable Josephson Voltage Standards
    Burroughs, Charles J.
    Rilfenacht, Alain
    Cular, Stefan
    Dresselhaus, Paul D.
    2020 CONFERENCE ON PRECISION ELECTROMAGNETIC MEASUREMENTS (CPEM), 2020,
  • [18] Measurement Comparison up to 65 GHz in Coaxial 1.85 mm Line
    Eio, Christopher
    Allal, Djamel
    Huerlimann, Peter
    Ruefenacht, Juerg
    Zinal, Sherko
    2016 CONFERENCE ON PRECISION ELECTROMAGNETIC MEASUREMENTS (CPEM 2016), 2016,
  • [19] The NPMM-200-large area high resolution for freeform measurement
    Schober, Christian
    Pruss, Christof
    Herkommer, Alois
    Osten, Wolfgang
    SEVENTH EUROPEAN SEMINAR ON PRECISION OPTICS MANUFACTURING, 2020, 11478
  • [20] Precision Loss Measurement of Reactive Compensation Components by Sampling Voltage and Current
    Mohns, E.
    Hallstrom, J.
    Suomalainen, E. -P.
    Badura, H.
    Fricke, S.
    2016 CONFERENCE ON PRECISION ELECTROMAGNETIC MEASUREMENTS (CPEM 2016), 2016,