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Dive into the research topics where Jay Mathew Lawhorn is active.

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Featured researches published by Jay Mathew Lawhorn.


European Physical Journal C | 2018

Measurements of the pp → ZZ production cross section and the Z → 4ℓ branching fraction, and constraints on anomalous triple gauge couplings at √s = 13 TeV

A. M. Sirunyan; D. Anderson; J. Bendavid; A. Bornheim; Jay Mathew Lawhorn; H. B. Newman; T. Nguyen; C. Pena; M. Spiropulu; J. R. Vlimant; S. Xie; Zhicai Zhang; R. Y. Zhu; M. Dubinin

Four-lepton production in proton-proton collisions, p p → ( Z / γ ∗ ) ( Z / γ ∗ ) → 4 ℓ , where ℓ = e or μ , is studied at a center-of-mass energy of 13 TeV with the CMS detector at the LHC. The data sample corresponds to an integrated luminosity of 35.9 fb - 1 . The ZZ production cross section, σ ( p p → Z Z ) = 17.2 ± 0.5 (stat) ± 0.7 (syst) ± 0.4 (theo) ± 0.4 (lumi) pb , measured using events with two opposite-sign, same-flavor lepton pairs produced in the mass region 60 < m ℓ + ℓ - < 120 GeV , is consistent with standard model predictions. Differential cross sections are measured and are well described by the theoretical predictions. The Z boson branching fraction to four leptons is measured to be B ( Z → 4 ℓ ) = 4 . 83 - 0.22 + 0.23 ( s t a t ) - 0.29 + 0.32 ( s y s t ) ± 0.08 ( t h e o ) ± 0.12 ( l u m i ) × 10 - 6 for events with a four-lepton invariant mass in the range 80 < m 4 ℓ < 100 GeV and a dilepton mass m ℓ ℓ > 4 GeV for all opposite-sign, same-flavor lepton pairs. The results agree with standard model predictions. The invariant mass distribution of the four-lepton system is used to set limits on anomalous ZZZ and ZZ γ couplings at 95% confidence level: - 0.0012 < f 4 Z < 0.0010 , - 0.0010 < f 5 Z < 0.0013 , - 0.0012 < f 4 γ < 0.0013 , - 0.0012 < f 5 γ < 0.0013 .Four-lepton production in proton-proton collisions,


Journal of High Energy Physics | 2018

Pseudorapidity distributions of charged hadrons in proton-lead collisions at

A. M. Sirunyan; D. Anderson; A. Bornheim; Jay Mathew Lawhorn; H. B. Newman; T. Nguyen; Cristian Pena; M. Spiropulu; J. R. Vlimant; Si Xie; Zhicai Zhang; R. Y. Zhu


Journal of High Energy Physics | 2017

\sqrt{s_{_\mathrm{NN}}} =

A. M. Sirunyan; D. Anderson; J. Bendavid; A. Bornheim; J. Bunn; Jay Mathew Lawhorn; A. Mott; H. B. Newman; Cristian Pena; M. Spiropulu; J. R. Vlimant; Si Xie; R. Y. Zhu; M. Dubinin

\mathrm {p}\mathrm {p}\rightarrow (\mathrm{Z}/ \gamma ^*)(\mathrm{Z}/\gamma ^*) \rightarrow 4\ell


Journal of High Energy Physics | 2017

5.02 and 8.16 TeV

A. M. Sirunyan; D. Anderson; J. Bendavid; A. Bornheim; J. Bunn; Javier Duarte; Jay Mathew Lawhorn; A. Mott; H. B. Newman; Cristian Pena; M. Spiropulu; J. R. Vlimant; Si Xie; R. Y. Zhu; M. Dubinin


European Physical Journal C | 2017

Measurements of the pp → Wγγ and pp → Zγγ cross sections and limits on anomalous quartic gauge couplings at √s = 8 TeV

A. M. Sirunyan; D. Anderson; J. Bendavid; A. Bornheim; Jay Mathew Lawhorn; H. B. Newman; T. Nguyen; C. Pena; M. Spiropulu; J. R. Vlimant; S. Xie; Zhicai Zhang; R. Y. Zhu; M. Dubinin

pp→(Z/γ∗)(Z/γ∗)→4ℓ, where


Physics Letters B | 2017

Search for associated production of dark matter with a Higgs boson decaying to bb¯ or γγ at √s = 13 TeV

V. Khachatryan; D. Anderson; A. Apresyan; J. Bendavid; A. Bornheim; J. Bunn; Y. C. Chen; J. Duarte; Jay Mathew Lawhorn; A. Mott; H. B. Newman; C. Pena; M. Spiropulu; J. R. Vlimant; S. Xie; R. Y. Zhu; M. Dubinin

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A. Bornheim

California Institute of Technology

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D. Anderson

California Institute of Technology

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H. B. Newman

California Institute of Technology

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M. Spiropulu

California Institute of Technology

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R. Y. Zhu

California Institute of Technology

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A. M. Sirunyan

Yerevan Physics Institute

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J. Bendavid

California Institute of Technology

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A. Mott

California Institute of Technology

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Cristian Pena

California Institute of Technology

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J. Bunn

California Institute of Technology

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