Full next-to-leading order calculations for dark matter pair production in the leptoquarks plus dark matter model

被引:0
作者
He, Dazhuang [1 ]
Zhang, Yu [2 ]
Sun, Hao [1 ]
机构
[1] Dalian Univ Technol, Inst Theoret Phys, Sch Phys, Dalian 116024, Peoples R China
[2] Hefei Univ Technol, Sch Phys, Hefei 230601, Peoples R China
基金
中国国家自然科学基金;
关键词
next-to-leading order corrections; leptoquarks model; dark matter; ELECTROWEAK RADIATIVE-CORRECTIONS; JET CROSS-SECTIONS; FEYNMAN-RULES; AUTOMATIC-GENERATION; DIPOLE FORMALISM; PACKAGE; LANHEP; E(+)E(-);
D O I
10.1088/1674-1137/adb387
中图分类号
O57 [原子核物理学、高能物理学];
学科分类号
070202 ;
摘要
The processes involving leptons plus missing energy (and jets) at lepton colliders (electron-positron and muon colliders) are studied in the leptoquarks plus dark matter (DM) model. We calculate the full next-to-leading order (NLO) corrections, including QCD, EW, and ISR, for heavy DM pair production, followed by the heavy DM cascade decay into stable DM and SM fermions. Large logarithmic effects caused by collinear ISR and EW virtual corrections are emphasized. Moreover, we emphasize that NLO corrections become increasingly significant with higher root s . However, for larger NLO corrections at high root s , the EW corrections dominate over the QCD corrections. The significance of the signals can be enhanced by applying kinematic cuts. By incorporating the NLO correction factor, the significance of the signal processes could be further improved by approximately 40% and 20% for chi(0)b nu(tau) and chi(0)c tau and channels at a 10 TeV muon collider.
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页数:18
相关论文
共 128 条
[1]  
Aaboud (ATLAS) M., 2019, JHEP, V2019, P144, DOI [10.1007/JHEP06%282019%29144, DOI 10.1007/JHEP06(2019)144]
[2]  
Aad (ATLAS) G., 2020, Eur. Phys. J. C, V80, P737, DOI [10.1140/epjc/s10052-020-8102-8, DOI 10.1140/EPJC/S10052-020-8102-8]
[3]  
Aad (ATLAS) G., 2020, JHEP, V2020, P112, DOI [10.1007/JHEP10%282020%29112, DOI 10.1007/JHEP10(2020)112]
[4]  
Aad (ATLAS) G., 2021, JHEP, V2021, P093, DOI [10.1007/JHEP05(2021)093, DOI 10.1007/JHEP05(2021)093]
[5]  
Aad (ATLAS) G., 2021, JHEP, V2021, P179, DOI [10.1007/JHEP06%282021%29179, DOI 10.1007/JHEP06(2021)179]
[6]  
Aad (ATLAS) G., 2020, Phys. Rev. D, V101, P032009, DOI [10.1103/PhysRevD.101.032009, DOI 10.1103/PHYSREVD.101.032009]
[7]   Search for new phenomena in events with an energetic jet and missing transverse momentum in pp collisions at √s=13 TeV with the ATLAS detector [J].
Aad, G. ;
Abbott, B. ;
Abbott, D. C. ;
Abud, A. Abed ;
Abeling, K. ;
Abhayasinghe, D. K. ;
Abidi, S. H. ;
AbouZeid, O. S. ;
Abraham, N. L. ;
Abramowicz, H. ;
Abreu, H. ;
Abulaiti, Y. ;
Acharya, B. S. ;
Achkar, B. ;
Adam, L. ;
Bourdarios, C. Adam ;
Adamczyk, L. ;
Adamek, L. ;
Adelman, J. ;
Adiguzel, A. ;
Adorni, S. ;
Adye, T. ;
Affolder, A. A. ;
Afik, Y. ;
Agapopoulou, C. ;
Agaras, M. N. ;
Aggarwal, A. ;
Agheorghiesei, C. ;
Aguilar-Saavedra, J. A. ;
Ahmad, A. ;
Ahmadov, F. ;
Ahmed, W. S. ;
Ai, X. ;
Aielli, G. ;
Akatsuka, S. ;
Akbiyik, M. ;
Akesson, T. P. A. ;
Akilli, E. ;
Akimov, A., V ;
Al Khoury, K. ;
Alberghi, G. L. ;
Albert, J. ;
Verzini, M. J. Alconada ;
Alderweireldt, S. ;
Aleksa, M. ;
Aleksandrov, I. N. ;
Alexa, C. ;
Alexopoulos, T. ;
Alfonsi, A. ;
Alfonsi, F. .
PHYSICAL REVIEW D, 2021, 103 (11)
[8]  
Aad (ATLAS) G., 2021, Phys. Rev. D, V104, P112005, DOI [10.1103/PhysRevD.104.112005, DOI 10.1103/PHYSREVD.104.112005]
[9]  
Aaij (LHCb) R., 2017, JHEP, V2017, P055, DOI [10.1007/JHEP08%282017%29055, DOI 10.1007/JHEP08(2017)055]
[10]  
Aaij (LHCb) R., 2022, Nature Phys, V18, P277, DOI [10.1038/s41567-021-01478-8, DOI 10.1038/S41567-021-01478-8]