Search for Dark Qcd With Emerging Jets in Proton-Proton Collisions at √s=13 Tev

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Abstract

A search for "emerging jets" produced in proton-proton collisions at a center-of-mass energy of 13 TeV is performed using data collected by the CMS experiment corresponding to an integrated luminosity of 138 fb(-1). This search examines a hypothetical dark quantum chromodynamics (QCD) sector that couples to the standard model (SM) through a scalar mediator. The scalar mediator decays into an SM quark and a dark sector quark. As the dark sector quark showers and hadronizes, it produces long-lived dark mesons that subsequently decay into SM particles, resulting in a jet, known as an emerging jet, with multiple displaced vertices. This search looks for pair production of the scalar mediator at the LHC, which yields events with two SM jets and two emerging jets at leading order. The results are interpreted using two dark sector models with different flavor structures, and exclude mediator masses up to 1950 (1950) GeV for an unflavored (flavor-aligned) dark QCD model. The unflavored results surpass a previous search for emerging jets by setting the most stringent mediator mass exclusion limits to date, while the flavor-aligned results provide the first direct mediator mass exclusion limits to date.

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Martinez Rivero, Celso/0000-0002-3224-956X; Lunerti, Leonardo/0000-0002-8932-0283; Troiano, Donato/0000-0001-7236-2025; Kim, Jaebak/0000-0002-2072-6082; Shevelev, Alexey/0000-0003-4600-0228; Shopova, Mariana/0000-0001-6664-2493; Milosevic, Vukasin/0000-0002-1173-0696; Della Ricca, Giuseppe/0000-0003-2831-6982; Navarrete Ramos, Efren/0000-0002-5180-4020; Pozniak, Krzysztof/0000-0001-5426-1423; Swain, Sanjay Kumar/0000-0001-6871-3937; Yalvac, Metin/0000-0003-4915-9162; Sarkar, Tanmay/0000-0003-0582-4167; Matorras, Francisco/0000-0003-4295-5668; Moscatelli, Francesco/0000-0002-7676-3106; Calderon, Dr. Alicia/0000-0002-7205-2040; Grunewald, Martin/0000-0002-5754-0388; Tiwari, Praveen Chandra/0000-0002-3667-3843; Menzio, Luca/0000-0002-9697-5608; Ramos, Dayron/0000-0002-7165-1017; Tcherniaev, Evgueni/0000-0002-3685-0635; Dash, Ganapati/0000-0002-7451-4763; Giommi, Luca/0000-0003-3539-4313; Wuchterl, Sebastian/0000-0001-9955-9258; Borshch, Vladislav/0000-0002-5479-1982; Tedeschi, Tommaso/0000-0002-7125-2905; Pedraza Morales, Maria Isabel/0000-0002-2669-4659; Venditti, Rosamaria/0000-0001-6925-8649; Cerci, Salim/0000-0002-8702-6152; Perez Adan, Danyer/0000-0003-3416-0726; Macchiolo, Anna/0000-0003-0199-6957; Rossi Tisbeni, Simone/0000-0001-6776-285X; Musich, Marco/0000-0001-7938-5684; Hernandez Calama, Jose Maria/0000-0001-6436-7547; Shchedrolosiev, Mykyta/0000-0003-3510-2093

Keywords

Beyond Standard Model, Dark Matter, Hadron-Hadron Scattering, Jets, long-lived, 13000 GeV-cms, Hadron collider physics; physics beyond the Standard Model, Beyond Standard Model; Dark Matter; Hadron-Hadron Scattering; Jets, QC770-798, High Energy Physics - Experiment, High Energy Physics - Experiment (hep-ex), Jets, p p scattering, Dark Matter, info:eu-repo/classification/ddc/530, new physics, track data analysis, higher-order: 0, CMS, Physics, new physics: search for, ddc:530, perturbation theory: higher-order, quantum chromodynamics model, jet signature, hidden sector, CERN LHC Coll, jet: signature, Centre for High Energy Physics, PARTICLE PHYSICS, LHC, p p: scattering, track data analysis: vertex, data analysis method, FOS: Physical sciences, higher-order 0, 530, Nuclear and particle physics. Atomic energy. Radioactivity, mediation, vertex, structure, High energy physics, perturbation theory, flavor, Hadron-Hadron Scattering, PARTICLE PHYSICS;LARGE HADRON COLLIDER;CMS, showers, LARGE HADRON COLLIDER, quantum chromodynamics: model, pair production, Beyond Standard Model, Experimental particle physics, p p: colliding beams, experimental results, Beyond Standard Model; Dark Matter; Hadron-Hadron Scattering; Jets;, high energy physics - experiment (hep-ex), hadron-hadron scattering, beyond standard model, jets, dark matter, Physics and Astronomy

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01 natural sciences, 0103 physical sciences

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2024

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