Physics with leptons and photons at the LHC
We present a phenomenological study of photon–initiated (PI) lepton production at the LHC, as implemented in the structure function (SF) approach. We provide detailed predictions for multidifferential lepton pair production, and show that the impact on observables sensitive to the weak mixing angle,...
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Veröffentlicht in: | Physical review. D 2021-10, Vol.104 (7), p.1, Article 073002 |
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description | We present a phenomenological study of photon–initiated (PI) lepton production at the LHC, as implemented in the structure function (SF) approach. We provide detailed predictions for multidifferential lepton pair production, and show that the impact on observables sensitive to the weak mixing angle, sin2θW, and W boson mass, MW, as well as PDFs can be non-negligible, in particular given the high precision being aimed for. The SF calculation can provide percent level precision in the corresponding production cross sections, and is therefore well positioned to account for LHC precision requirements. In addition to the pure γγ channel, we include initial-state Z as well as mixed γ/Z+q contributions, and assess their impact. We also consider photon-initiated lepton-lepton scattering, and again find the SF approach can provide high precision predictions for this process in way that can straightforwardly account for any fiducial cuts imposed. Finally, we provide a publicly available Monte Carlo generator, SFGen, for PI lepton pair production and lepton-lepton scattering within the SF approach, for use by the community. |
doi_str_mv | 10.1103/PhysRevD.104.073002 |
format | Article |
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A.</creator><creatorcontrib>Harland-Lang, L. A.</creatorcontrib><description>We present a phenomenological study of photon–initiated (PI) lepton production at the LHC, as implemented in the structure function (SF) approach. We provide detailed predictions for multidifferential lepton pair production, and show that the impact on observables sensitive to the weak mixing angle, sin2θW, and W boson mass, MW, as well as PDFs can be non-negligible, in particular given the high precision being aimed for. The SF calculation can provide percent level precision in the corresponding production cross sections, and is therefore well positioned to account for LHC precision requirements. In addition to the pure γγ channel, we include initial-state Z as well as mixed γ/Z+q contributions, and assess their impact. We also consider photon-initiated lepton-lepton scattering, and again find the SF approach can provide high precision predictions for this process in way that can straightforwardly account for any fiducial cuts imposed. Finally, we provide a publicly available Monte Carlo generator, SFGen, for PI lepton pair production and lepton-lepton scattering within the SF approach, for use by the community.</description><identifier>ISSN: 2470-0010</identifier><identifier>EISSN: 2470-0029</identifier><identifier>DOI: 10.1103/PhysRevD.104.073002</identifier><language>eng</language><publisher>College Park: American Physical Society</publisher><subject>Leptons ; Pair production ; Photons ; Scattering</subject><ispartof>Physical review. 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D</title><description>We present a phenomenological study of photon–initiated (PI) lepton production at the LHC, as implemented in the structure function (SF) approach. We provide detailed predictions for multidifferential lepton pair production, and show that the impact on observables sensitive to the weak mixing angle, sin2θW, and W boson mass, MW, as well as PDFs can be non-negligible, in particular given the high precision being aimed for. The SF calculation can provide percent level precision in the corresponding production cross sections, and is therefore well positioned to account for LHC precision requirements. In addition to the pure γγ channel, we include initial-state Z as well as mixed γ/Z+q contributions, and assess their impact. We also consider photon-initiated lepton-lepton scattering, and again find the SF approach can provide high precision predictions for this process in way that can straightforwardly account for any fiducial cuts imposed. 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A.</creatorcontrib><collection>CrossRef</collection><collection>Solid State and Superconductivity Abstracts</collection><collection>Technology Research Database</collection><collection>Aerospace Database</collection><collection>Advanced Technologies Database with Aerospace</collection><jtitle>Physical review. D</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Harland-Lang, L. A.</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Physics with leptons and photons at the LHC</atitle><jtitle>Physical review. D</jtitle><date>2021-10-01</date><risdate>2021</risdate><volume>104</volume><issue>7</issue><spage>1</spage><pages>1-</pages><artnum>073002</artnum><issn>2470-0010</issn><eissn>2470-0029</eissn><abstract>We present a phenomenological study of photon–initiated (PI) lepton production at the LHC, as implemented in the structure function (SF) approach. We provide detailed predictions for multidifferential lepton pair production, and show that the impact on observables sensitive to the weak mixing angle, sin2θW, and W boson mass, MW, as well as PDFs can be non-negligible, in particular given the high precision being aimed for. The SF calculation can provide percent level precision in the corresponding production cross sections, and is therefore well positioned to account for LHC precision requirements. In addition to the pure γγ channel, we include initial-state Z as well as mixed γ/Z+q contributions, and assess their impact. We also consider photon-initiated lepton-lepton scattering, and again find the SF approach can provide high precision predictions for this process in way that can straightforwardly account for any fiducial cuts imposed. 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subjects | Leptons Pair production Photons Scattering |
title | Physics with leptons and photons at the LHC |
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