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A Search for Long-lived Particles that Stop in the CMS Detector and Decay to Muons

A Search for Long-lived Particles that Stop in the CMS Detector and Decay to Muons
Author:
Publisher:
Total Pages: 338
Release: 2016
Genre:
ISBN:

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A search for long-lived particles that are produced in proton-proton collisions at the CERN LHC, come to rest in the CMS detector, and decay to muons is presented. The decays of the stopped particles could be observed during the intervals between LHC beam crossings, at times that are well separated from any proton-proton collisions. The analysis uses 19.7 1/fb of 8 TeV data collected by CMS in 2012, during a search interval of 293 hours of trigger livetime. Massive, long-lived particles do not exist in the Standard Model, and so any sign of them would be an indication of new physics. The results are interpreted with a model that predicts a long-lived particle that has a charge of twice the electron charge and that behaves like a lepton. Cross section limits are set for each long-lived particle mass as a function of lifetime, for lifetimes between 100 ns and 10 days. These are the first limits for long-lived stopped particles that decay to muons.


Search for Long-Lived Particles that Decay to Muon Pairs at 13 TeV and an Algorithm to Improve Resolution in the Muon System of the Compact Muon Solenoid

Search for Long-Lived Particles that Decay to Muon Pairs at 13 TeV and an Algorithm to Improve Resolution in the Muon System of the Compact Muon Solenoid
Author: William Arthur Nash
Publisher:
Total Pages: 192
Release: 2022
Genre:
ISBN:

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This thesis presents a search for new long-lived particles decaying to two muons in the Compact Muon Solenoid (CMS) detector using proton-proton collision data taken at √s = 13 TeV corresponding to 96.6 fb−1 of integrated luminosity during the Run 2 of the Large Hadron Collider (LHC). The search spans the full extent of the CMS detector and probes vertices displaced from the interaction point ranging from less than a millimeter to multiple meters. No evidence for beyond the standard model physics is observed. Results are interpreted in the context of both scalar and vector models for the long-lived particle. We also present a detailed description of a novel algorithm for the endcap muon system of CMS which improves muon resolution of the Level-1 Trigger to be implemented for the upcoming Run 3 data taking period.


Search for Long-Lived Particles Decaying to Displaced Dimuons at 13 TeV and Study of Neutron-Induced Background Hits in the Muon System of the Compact Muon Solenoid

Search for Long-Lived Particles Decaying to Displaced Dimuons at 13 TeV and Study of Neutron-Induced Background Hits in the Muon System of the Compact Muon Solenoid
Author: Abhigyan Dasgupta
Publisher:
Total Pages: 211
Release: 2019
Genre:
ISBN:

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This thesis presents a search for new long-lived particles decaying to two muons in the CMS detector with pp collision data taken at sqrt(s) = 13 TeV corresponding to 36.3 fb-1 of integrated luminosity during Run 2 of the LHC. Such decays would appear as dimuon vertices displaced with respect to the pp interaction point. The search presented in this thesis uses only the muon system in order to probe the longest lifetimes to which the LHC experiments are sensitive. The results are interpreted in terms of a benchmark model consisting of exotic Higgs bosons decaying to long-lived scalar bosons, but are presented in an approximately model-independent way suitable for reinterpretation. No excess is observed. The appendix describes a study of neutron-induced background in CMS endcap muon chambers.


A Search for Exotic Higgs Decays

A Search for Exotic Higgs Decays
Author: Jackson Burzynski
Publisher: Springer Nature
Total Pages: 201
Release: 2023-05-23
Genre: Science
ISBN: 3031304667

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The absence of new physics at the TeV scale observed thus far at the Large Hadron Collider (LHC) motivates an increasing focus on searches for weakly-coupled new particles and exotic signatures. In particular, particles with macroscopic mean proper lifetimes, known as long-lived particles (LLPs), are of significant interest due to their ability to elude the majority of searches which rely on the assumption that Beyond Standard Model particles decay close to the primary interaction point. Many models which aim to solve various issues with the Standard Model (SM) introduce new particles with lifetimes that are either unconstrained, or even shown to prefer the macroscopic regime. These theories often point to the Higgs boson as a possible portal to new physics, with exotic Higgs decays being the primary phenomenological consequence and means of discovery. It is well motivated both from theory and experimental constraints to consider the scenario in which the particles produced in these exotic decays have macroscopic proper lifetimes and give rise to unique detector signatures. This work describes a search for exotic decays of the Higgs boson to two long-lived, neutral, spin-0 particles which subsequently decay to pairs of b quarks, giving the striking signature of displaced hadronic jets in the ATLAS inner detector. Several other ATLAS searches have probed this decay topology previously, excluding branching ratios of the Higgs boson to LLPs of more than 10% for proper lifetimes greater than 100mm. These searches relied on dedicated triggers designed to select events with LLPs decaying in the ATLAS calorimeter or muon spectrometer. The lack of an equivalent trigger for LLP decays in the ATLAS inner detector has been a limiting factor in probing LLP lifetimes less than 100mm. To circumvent the difficulty of triggering on LLP decays, the search presented in this thesis exploits the ZH associated production mode, relying on leptonic trigger signatures to select interesting events. This is the first search for Higgs boson decays into LLPs to exploit this analysis methodology and additionally makes use of several novel methods for both background rejection and background estimation. No excess over Standard Model predictions is observed, and upper limits are set on the branching ratio of the Higgs boson to LLPs . Depending on the mass of the LLP, branching ratios greater than 10% are excluded for lifetimes as small as 4mm and as large as 100mm, probing an important gap in the ATLAS exotic Higgs decay programme. In comparison to the previous searches for Higgs decays to LLPs, these are among the most stringent limits placed on this scenario, and for LLPs with masses below 40 GeV these results represent the strongest existing constraints on the branching ratio of the Higgs boson to LLPs in this lifetime regime.


Displaced Vertices

Displaced Vertices
Author: Dan Quach
Publisher:
Total Pages: 0
Release: 2020
Genre:
ISBN:

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We report the results of a search for long-lived particles produced in pairs in proton-proton collisions at the LHC operating at a center-of-mass energy of √s = 13 TeV. The data were collected by the CMS detector during the full Run 2 data taking period from 2015 through 2018, corresponding to a total integrated luminosity of 140/fb. This search targets pair-produced long-lived particles with a mean proper decay length between 0.1 and 100 mm that each decay into at least two quarks. The signature is a pair of displaced vertices each formed from many tracks. This search extends a previous CMS search using the 2015 and 2016 dataset, with improvements in background rejection, background estimation techniques, as well as uncertainty estimation. Results are compared with R-parity violating supersymmetry models that predict pair-produced long-lived particles, each decaying into multijet or dijet final states. No events are observed with two reconstructed high-track-multiplicity vertices. For models of long-lived pair-produced neutralinos, gluinos, and top squarks, pair-production cross sections larger than 0.08 fb at 95% confidence level are excluded for masses between 800 and 3000 GeV and mean proper decay lengths between 1 and 25 mm. In the gluino model, masses up to 2500 GeV are excluded for mean proper decay lengths between 0.6 and 90 mm. In the neutralino model, masses up to 1100 GeV are excluded for mean proper decay lengths between 0.6 and 70 mm. For the top squark model, masses up to 1600 GeV are excluded for mean proper decay lengths between 0.4 and 80 mm.


A Search for Quasi-long-lived Supersymmetric Particles Within the CMS Detector at the LHC

A Search for Quasi-long-lived Supersymmetric Particles Within the CMS Detector at the LHC
Author: Michael Kenneth Squires
Publisher:
Total Pages:
Release: 2015
Genre:
ISBN: 9781339542317

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This dissertation presents a search for supersymmetry (SUSY), an extension to the stan- dard model (SM) of particle physics, with mass-degenerate co-next-to-lightest-stable parti- cles (co-NLSP). These co-NLSP particles are sleptons: either a selectron or smuon. Both of these co-NLSP sleptons undergo decay to their standard model counterparts and a nearly massless gravitino. We analyze a dataset of 19.4 fb−1 collected during run one operations at the Compact Muon Solenoid (CMS) detector at the Large Hadron Collider which ran at an 8 TeV center-of-mass collision energy. The co-NLSP sleptons in this model are quasistable, producing decays within the detector volume. We construct a custom analysis object com- posed of pairs of tracks that form a vertex at high precision. Tracks in events that pass trigger cuts which use initial and final state radiation from the hard co-NLSP pair production process, as well as the missing transverse energy from the gravitino are candidates for inclusion in this custom analysis object. We impose a series of offline selection cuts designed to separate possible beyond SM decay signatures from mundane backgrounds such as quasielastic scattering or select standard model decays like charged kaon or sigma decay. We take tuples that pass these selection criterion and boost the putative daughter particle into the putative mother particle's reference frame to form a spectrum in p* which, under the assumption of a decay at a specified mass configuration, produces a delta distribution that is smeared via resolution effects into a signal shape originating from decay. We observe at most three events in the data at the low end of our search region (100 GeV mother mass), which falls to zero events at a slepton mother mass of 260 GeV. These spectra are fit using a likelihood model with the signal probability density function being derived from simulation and the background selected as an exponential. Using Bayesian statistics and the profile likelihood technique we set limits on the co-NLSP slepton production cross section for masses between 100-210 GeV with proper lifetimes up to c[tau] = 93 cm.


A Search for Displaced Leptons in the ATLAS Detector

A Search for Displaced Leptons in the ATLAS Detector
Author: Lesya Horyn
Publisher: Springer Nature
Total Pages: 146
Release: 2022-02-07
Genre: Science
ISBN: 3030916723

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This thesis presents a search for long-lived particles decaying into displaced electrons and/or muons with large impact parameters. This signature provides unique sensitivity to the production of theoretical lepton-partners, sleptons. These particles are a feature of supersymmetric theories, which seek to address unanswered questions in nature. The signature searched for in this thesis is difficult to identify, and in fact, this is the first time it has been probed at the Large Hadron Collider (LHC). It covers a long-standing gap in coverage of possible new physics signatures. This thesis describes the special reconstruction and identification algorithms used to select leptons with large impact parameters and the details of the background estimation. The results are consistent with background, so limits on slepton masses and lifetimes in this model are calculated at 95% CL, drastically improving on the previous best limits from the Large Electron Positron Collider (LEP).