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Probing Neutral Triple Gauge Couplings at the LHC and Future Hadron Colliders

We study probes of neutral triple gauge couplings (nTGCs) at the LHC and the proposed 100 TeV <math display="inline"><mi>p</mi><mi>p</mi></math> colliders, and compare their sensitivity reaches with those of proposed <math display="inline"&g...

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Autores principales: Ellis, John, He, Hong-Jian, Xiao, Rui-Qing
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.107.035005
http://cds.cern.ch/record/2815344
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author Ellis, John
He, Hong-Jian
Xiao, Rui-Qing
author_facet Ellis, John
He, Hong-Jian
Xiao, Rui-Qing
author_sort Ellis, John
collection CERN
description We study probes of neutral triple gauge couplings (nTGCs) at the LHC and the proposed 100 TeV <math display="inline"><mi>p</mi><mi>p</mi></math> colliders, and compare their sensitivity reaches with those of proposed <math display="inline"><msup><mi>e</mi><mo>+</mo></msup><msup><mi>e</mi><mo>-</mo></msup></math> colliders. The nTGCs provide a unique window to the new physics beyond the Standard Model (SM) because they can arise from SM effective field theory operators that respect the full electroweak gauge group <math display="inline"><mrow><mi>SU</mi><mo stretchy="false">(</mo><mn>2</mn><msub><mrow><mo stretchy="false">)</mo></mrow><mrow><mi mathvariant="normal">L</mi></mrow></msub><mo stretchy="false">⊗</mo><msub><mrow><mi mathvariant="normal">U</mi><mo stretchy="false">(</mo><mn>1</mn><mo stretchy="false">)</mo></mrow><mrow><mi mathvariant="normal">Y</mi></mrow></msub></mrow></math> of the SM only at the level of dimension-8 or higher. We derive the neutral triple gauge vertices (nTGVs) generated by these dimension-8 operators in the broken phase and map them onto a newly generalized form factor formulation, which takes into account only the residual <math display="inline"><mrow><mi mathvariant="normal">U</mi><mo stretchy="false">(</mo><mn>1</mn><msub><mrow><mo stretchy="false">)</mo></mrow><mrow><mi>em</mi></mrow></msub></mrow></math> gauge symmetry. Using this mapping, we derive new nontrivial relations between the form factors that guarantee a truly consistent form factor formulation of the nTGVs and remove large unphysical energy-dependent terms. We then analyze the sensitivity reaches of the LHC and future 100 TeV hadron colliders for probing the nTGCs via both the dimension-8 nTGC operators and the corresponding nTGC form factors in the reaction <math display="inline"><mrow><mi>p</mi><mi>p</mi><mo stretchy="false">(</mo><mi>q</mi><mover accent="true"><mrow><mi>q</mi></mrow><mrow><mo stretchy="false">¯</mo></mrow></mover><mo stretchy="false">)</mo><mo stretchy="false">→</mo><mi>Z</mi><mi>γ</mi></mrow></math> with <math display="inline"><mrow><mi>Z</mi><mo stretchy="false">→</mo><msup><mrow><mo>ℓ</mo></mrow><mrow><mo>+</mo></mrow></msup><msup><mrow><mo>ℓ</mo></mrow><mrow><mo>-</mo></mrow></msup></mrow></math>, <math display="inline"><mrow><mi>ν</mi><mover accent="true"><mrow><mi>ν</mi></mrow><mrow><mo stretchy="false">¯</mo></mrow></mover></mrow></math>. We compare their sensitivities with the existing LHC measurements of nTGCs and with those of the high-energy <math display="inline"><mrow><msup><mrow><mi>e</mi></mrow><mrow><mo>+</mo></mrow></msup><msup><mrow><mi>e</mi></mrow><mrow><mo>-</mo></mrow></msup></mrow></math> colliders. In general, we find that the prospective LHC sensitivities are comparable to those of an <math display="inline"><msup><mi>e</mi><mo>+</mo></msup><msup><mi>e</mi><mo>-</mo></msup></math> collider with center-of-mass energy <math display="inline"><mrow><mo>≤</mo><mn>1</mn><mtext> </mtext><mtext> </mtext><mi>TeV</mi></mrow></math>, whereas an <math display="inline"><msup><mi>e</mi><mo>+</mo></msup><msup><mi>e</mi><mo>-</mo></msup></math> collider with center-of-mass energy (3–5) TeV would have greater sensitivities, and a 100 TeV <math display="inline"><mi>p</mi><mi>p</mi></math> collider could provide the most sensitive probes of the nTGCs.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28153442023-03-24T04:06:03Zdoi:10.1103/PhysRevD.107.035005http://cds.cern.ch/record/2815344engEllis, JohnHe, Hong-JianXiao, Rui-QingProbing Neutral Triple Gauge Couplings at the LHC and Future Hadron CollidersParticle Physics - ExperimentParticle Physics - PhenomenologyWe study probes of neutral triple gauge couplings (nTGCs) at the LHC and the proposed 100 TeV <math display="inline"><mi>p</mi><mi>p</mi></math> colliders, and compare their sensitivity reaches with those of proposed <math display="inline"><msup><mi>e</mi><mo>+</mo></msup><msup><mi>e</mi><mo>-</mo></msup></math> colliders. The nTGCs provide a unique window to the new physics beyond the Standard Model (SM) because they can arise from SM effective field theory operators that respect the full electroweak gauge group <math display="inline"><mrow><mi>SU</mi><mo stretchy="false">(</mo><mn>2</mn><msub><mrow><mo stretchy="false">)</mo></mrow><mrow><mi mathvariant="normal">L</mi></mrow></msub><mo stretchy="false">⊗</mo><msub><mrow><mi mathvariant="normal">U</mi><mo stretchy="false">(</mo><mn>1</mn><mo stretchy="false">)</mo></mrow><mrow><mi mathvariant="normal">Y</mi></mrow></msub></mrow></math> of the SM only at the level of dimension-8 or higher. We derive the neutral triple gauge vertices (nTGVs) generated by these dimension-8 operators in the broken phase and map them onto a newly generalized form factor formulation, which takes into account only the residual <math display="inline"><mrow><mi mathvariant="normal">U</mi><mo stretchy="false">(</mo><mn>1</mn><msub><mrow><mo stretchy="false">)</mo></mrow><mrow><mi>em</mi></mrow></msub></mrow></math> gauge symmetry. Using this mapping, we derive new nontrivial relations between the form factors that guarantee a truly consistent form factor formulation of the nTGVs and remove large unphysical energy-dependent terms. We then analyze the sensitivity reaches of the LHC and future 100 TeV hadron colliders for probing the nTGCs via both the dimension-8 nTGC operators and the corresponding nTGC form factors in the reaction <math display="inline"><mrow><mi>p</mi><mi>p</mi><mo stretchy="false">(</mo><mi>q</mi><mover accent="true"><mrow><mi>q</mi></mrow><mrow><mo stretchy="false">¯</mo></mrow></mover><mo stretchy="false">)</mo><mo stretchy="false">→</mo><mi>Z</mi><mi>γ</mi></mrow></math> with <math display="inline"><mrow><mi>Z</mi><mo stretchy="false">→</mo><msup><mrow><mo>ℓ</mo></mrow><mrow><mo>+</mo></mrow></msup><msup><mrow><mo>ℓ</mo></mrow><mrow><mo>-</mo></mrow></msup></mrow></math>, <math display="inline"><mrow><mi>ν</mi><mover accent="true"><mrow><mi>ν</mi></mrow><mrow><mo stretchy="false">¯</mo></mrow></mover></mrow></math>. We compare their sensitivities with the existing LHC measurements of nTGCs and with those of the high-energy <math display="inline"><mrow><msup><mrow><mi>e</mi></mrow><mrow><mo>+</mo></mrow></msup><msup><mrow><mi>e</mi></mrow><mrow><mo>-</mo></mrow></msup></mrow></math> colliders. In general, we find that the prospective LHC sensitivities are comparable to those of an <math display="inline"><msup><mi>e</mi><mo>+</mo></msup><msup><mi>e</mi><mo>-</mo></msup></math> collider with center-of-mass energy <math display="inline"><mrow><mo>≤</mo><mn>1</mn><mtext> </mtext><mtext> </mtext><mi>TeV</mi></mrow></math>, whereas an <math display="inline"><msup><mi>e</mi><mo>+</mo></msup><msup><mi>e</mi><mo>-</mo></msup></math> collider with center-of-mass energy (3–5) TeV would have greater sensitivities, and a 100 TeV <math display="inline"><mi>p</mi><mi>p</mi></math> collider could provide the most sensitive probes of the nTGCs.We study probes of neutral triple gauge couplings (nTGCs) at the LHC and the proposed 100TeV $pp$ colliders, and compare their sensitivity reaches with those of the proposed $e^+ e^-$ colliders. The nTGCs provide a unique window to the new physics beyond the Standard Model (SM) because they can arise from SM effective field theory (SMEFT) operators that respect the full electroweak gauge group $SU(2)_L\otimes U(1)_Y$ of the SM only at the level of dimension-8 or higher. We derive the neutral triple gauge vertices (nTGVs) generated by these dimension-8 operators in the broken phase and map them onto a newly generalized form factor formulation, which takes into account only the residual U(1)$_{\rm{em}}$ gauge symmetry. Using this mapping, we derive new relations between the form factors that guarantee a truly consistent form factor formulation of the nTGVs and remove large unphysical energy-dependent terms. We then analyze the sensitivity reaches of the LHC and future 100TeV hadron colliders for probing the nTGCs via both the dimension-8 nTGC operators and the corresponding nTGC form factors in the reactions $ pp(q\bar{q})\to Z\gamma$ with $Z\to\ell^+\ell^-,\nu\bar{\nu}$. We compare their sensitivities with the existing LHC measurements of nTGCs and with those of the high-energy $e^+e^-$ colliders. In general, we find that the prospective LHC sensitivities are comparable to those of an $e^+ e^-$ collider with center-of-mass energy $\leq 1$TeV, whereas an $e^+ e^-$ collider with center-of-mass energy $(3 - 5)$TeV would have greater sensitivities, and a 100TeV $pp$ collider could provide the most sensitive probes of the nTGCs.arXiv:2206.11676KCL-PH-TH/2022-35CERN-TH-2022-089oai:cds.cern.ch:28153442022-06-23
spellingShingle Particle Physics - Experiment
Particle Physics - Phenomenology
Ellis, John
He, Hong-Jian
Xiao, Rui-Qing
Probing Neutral Triple Gauge Couplings at the LHC and Future Hadron Colliders
title Probing Neutral Triple Gauge Couplings at the LHC and Future Hadron Colliders
title_full Probing Neutral Triple Gauge Couplings at the LHC and Future Hadron Colliders
title_fullStr Probing Neutral Triple Gauge Couplings at the LHC and Future Hadron Colliders
title_full_unstemmed Probing Neutral Triple Gauge Couplings at the LHC and Future Hadron Colliders
title_short Probing Neutral Triple Gauge Couplings at the LHC and Future Hadron Colliders
title_sort probing neutral triple gauge couplings at the lhc and future hadron colliders
topic Particle Physics - Experiment
Particle Physics - Phenomenology
url https://dx.doi.org/10.1103/PhysRevD.107.035005
http://cds.cern.ch/record/2815344
work_keys_str_mv AT ellisjohn probingneutraltriplegaugecouplingsatthelhcandfuturehadroncolliders
AT hehongjian probingneutraltriplegaugecouplingsatthelhcandfuturehadroncolliders
AT xiaoruiqing probingneutraltriplegaugecouplingsatthelhcandfuturehadroncolliders