Unleashing the full power of LHCb to probe stealth new physics

Unleashing the full power of LHCb to probe stealth new physics
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DOI:
10.1088/1361-6633/ac4649
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发表时间:
2021-05
影响因子:
18.1
通讯作者:
M. Borsato;X. C. Vidal;Yuhsin Tsai;C. Sierra;J. Zurita;G. Alonso-Álvarez;A. Boyarsky;Alexandre Brea Rodr'iguez;D. B. Franzosi;G. Cacciapaglia;A. Vidal;M. Du;Gilly Elor;M. Escudero;G. Ferretti;T. Flacke;P. Foldenauer;Jan Hajer;L. Henry;P. Ilten;J. Kamenik;B. Jashal;S. Knapen;F. Redi;M. Low;Zuowei Liu;A. O. Campos;E. Polycarpo;M. Ramos;M. R. Pernas;E. Salvioni;M. Rangel;R. Schafer;L. Sestini;Y. Soreq;V. Tran;I. Timiryasov;M. Veghel;S. Westhoff;Michael Williams;J. Zupan
M. Borsato;X. C. Vidal;Yuhsin Tsai;C. Sierra;J. Zurita;G. Alonso-Álvarez;A. Boyarsky;Alexandre Brea Rodr'iguez;D. B. Franzosi;G. Cacciapaglia;A. Vidal;M. Du;Gilly Elor;M. Escudero;G. Ferretti;T. Flacke;P. Foldenauer;Jan Hajer;L. Henry;P. Ilten;J. Kamenik;B. Jashal;S. Knapen;F. Redi;M. Low;Zuowei Liu;A. O. Campos;E. Polycarpo;M. Ramos;M. R. Pernas;E. Salvioni;M. Rangel;R. Schafer;L. Sestini;Y. Soreq;V. Tran;I. Timiryasov;M. Veghel;S. Westhoff;Michael Williams;J. Zupan
中科院分区:
物理与天体物理1区
文献类型:
--
作者:
M. Borsato;X. C. Vidal;Yuhsin Tsai;C. Sierra;J. Zurita;G. Alonso-Álvarez;A. Boyarsky;Alexandre Brea Rodr'iguez;D. B. Franzosi;G. Cacciapaglia;A. Vidal;M. Du;Gilly Elor;M. Escudero;G. Ferretti;T. Flacke;P. Foldenauer;Jan Hajer;L. Henry;P. Ilten;J. Kamenik;B. Jashal;S. Knapen;F. Redi;M. Low;Zuowei Liu;A. O. Campos;E. Polycarpo;M. Ramos;M. R. Pernas;E. Salvioni;M. Rangel;R. Schafer;L. Sestini;Y. Soreq;V. Tran;I. Timiryasov;M. Veghel;S. Westhoff;Michael Williams;J. Zupan

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在本文中,我们描述了潜在的LHCb实验,以检测隐形物理。这指的是超出标准模型的动态,这将逃避专注于高能物体或已知过程的精确测量的搜索。隐形特征包括长寿命的粒子和光共振,它们很少产生或与压倒性的背景一起产生。我们将讨论为什么LHCb能够在大型强子对撞机上发现这种物理现象,并提供可以在实验中详细探索的动机良好的理论模型的例子。
In this paper, we describe the potential of the LHCb experiment to detect stealth physics. This refers to dynamics beyond the standard model that would elude searches that focus on energetic objects or precision measurements of known processes. Stealth signatures include long-lived particles and light resonances that are produced very rarely or together with overwhelming backgrounds. We will discuss why LHCb is equipped to discover this kind of physics at the Large Hadron Collider and provide examples of well-motivated theoretical models that can be probed with great detail at the experiment.