在CMS实验中测量D0介子衰变中的CP破坏

IF 0.6 4区 物理与天体物理 Q4 PHYSICS, MULTIDISCIPLINARY
V. S. Sergeychik, S. M. Polikarpov
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引用次数: 0

摘要

本文描述了D0→\(K_{S}^{0}K_{S}^{0}\)衰变中CP违背的搜索结果。利用大型强子对撞机CMS实验记录的质心能量为\(\sqrt s \) = 13 TeV的质子-质子碰撞数据进行分析。分析的数据样本包含大约1010个与粲强子产生相关的事件,这允许进行精确的测量。测量的CP违逆参数为ACP (D0→\(K_{S}^{0}K_{S}^{0}\)) =(6.2±3.1 (stat.)±0.2 (syst.)±0.8 (ACP (D0→\(K_{S}^{0}\) π+π−))%, where the last uncertainty is due to the uncertainty in the reference channel asymmetry ACP (D0 → \(K_{S}^{0}\)π+π−). The obtained results are consistent with no CP violation in the studied decay. This analysis is the first measurement of CP violation in charm sector at the CMS experiment.
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Measurement of CP Violation in D0 Meson Decays at the CMS Experiment

The paper describes the search results for CP violation in the D0\(K_{S}^{0}K_{S}^{0}\) decay. The analysis was performed using the proton–proton collision data with centre-of-mass energy of \(\sqrt s \) = 13 TeV, recorded by the CMS experiment at the Large Hadron Collider. The analyzed data sample contains about 1010 events associated with production of charm hadrons, which allows performing precise measurements. The measured CP violation parameter is ACP (D0\(K_{S}^{0}K_{S}^{0}\)) = (6.2 ± 3.1 (stat.) ± 0.2 (syst.) ± 0.8 (ACP (D0\(K_{S}^{0}\)π+π))%, where the last uncertainty is due to the uncertainty in the reference channel asymmetry ACP (D0\(K_{S}^{0}\)π+π). The obtained results are consistent with no CP violation in the studied decay. This analysis is the first measurement of CP violation in charm sector at the CMS experiment.

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来源期刊
Bulletin of the Lebedev Physics Institute
Bulletin of the Lebedev Physics Institute PHYSICS, MULTIDISCIPLINARY-
CiteScore
0.70
自引率
25.00%
发文量
41
审稿时长
6-12 weeks
期刊介绍: Bulletin of the Lebedev Physics Institute is an international peer reviewed journal that publishes results of new original experimental and theoretical studies on all topics of physics: theoretical physics; atomic and molecular physics; nuclear physics; optics; lasers; condensed matter; physics of solids; biophysics, and others.
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