O7-O8干涉对B→Xsγγ衰变的贡献

IF 0.5 4区 物理与天体物理 Q4 PHYSICS, MULTIDISCIPLINARY Journal of Contemporary Physics (Armenian Academy of Sciences) Pub Date : 2023-07-14 DOI:10.1134/S1068337223020044
H. H. Asatryan, H. M. Asatrian, S. A. Tumasyan
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引用次数: 0

摘要

罕见的b介子衰变使人们能够研究SM之外的物理。对于\(B \to {{X}_{s}}{{\gamma \gamma }}\)过程,潜在的新物理不仅可以在衰减的宽度上看到,而且可以在参数\(({{s}_{1}},{{s}_{2}})\)的微分分布中看到,定义为\({{s}_{i}} = {{({{p}_{b}} - {{q}_{i}})}^{2}}{\text{/}}m_{b}^{2}\), (i = 1,2),其中\({{p}_{b}}\), \({{q}_{1}},{{q}_{2}}\)是b-夸克和两个光子的动量。在这项工作中,计算了算子\({{O}_{7}} - {{O}_{8}}\)的干扰阶\({{{{\alpha }}}_{s}}\)的贡献。我们还考虑了s-夸克质量在400-600 MeV范围内通过改变\({{m}_{s}}\)对结果的依赖性。在所考虑的相空间区域中,算子的干扰\({{O}_{7}} - {{O}_{8}}\)对衰减宽度\(B \to {{X}_{s}}{{\gamma \gamma }}\)的贡献等于2-3%.
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Contribution of the Interference of the O7–O8 for the B → Xsγγ Decay

Rare decays of B-mesons allow one the investigation of physics outside of the SM. For \(B \to {{X}_{s}}{{\gamma \gamma }}\) processes, the potential new physics should be visible not only for the width of the decay but also in the differential distributions for the parameters \(({{s}_{1}},{{s}_{2}})\), defined as \({{s}_{i}} = {{({{p}_{b}} - {{q}_{i}})}^{2}}{\text{/}}m_{b}^{2}\), (i = 1, 2), where \({{p}_{b}}\), \({{q}_{1}},{{q}_{2}}\) are the momenta of the b-quark and the two photons. In this work, the contribution of the order \({{{{\alpha }}}_{s}}\) of the interference of the operators \({{O}_{7}} - {{O}_{8}}\) was calculated. We also consider the dependence of the results from the mass of the s-quark by changing \({{m}_{s}}\) in the range of 400–600 MeV. The contribution of the interference of the operators \({{O}_{7}} - {{O}_{8}}\) into the width of the decay \(B \to {{X}_{s}}{{\gamma \gamma }}\) in the regions of the phase space considered is equal to 2–3%.

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来源期刊
CiteScore
1.00
自引率
66.70%
发文量
43
审稿时长
6-12 weeks
期刊介绍: Journal of Contemporary Physics (Armenian Academy of Sciences) is a journal that covers all fields of modern physics. It publishes significant contributions in such areas of theoretical and applied science as interaction of elementary particles at superhigh energies, elementary particle physics, charged particle interactions with matter, physics of semiconductors and semiconductor devices, physics of condensed matter, radiophysics and radioelectronics, optics and quantum electronics, quantum size effects, nanophysics, sensorics, and superconductivity.
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