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Search for Dark Matter Produced in Association with a Higgs Boson Decaying to Two Bottom Quarks at ATLAS

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Release : 2016-09-29
Genre : Science
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Book Rating : 18X/5 ( reviews)

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Book Synopsis Search for Dark Matter Produced in Association with a Higgs Boson Decaying to Two Bottom Quarks at ATLAS by : Yangyang Cheng

Download or read book Search for Dark Matter Produced in Association with a Higgs Boson Decaying to Two Bottom Quarks at ATLAS written by Yangyang Cheng. This book was released on 2016-09-29. Available in PDF, EPUB and Kindle. Book excerpt: This thesis reports on the search for dark matter in data taken with the ATLAS detector at CERN’s Large Hadron Collider (LHC). The identification of dark matter and the determination of its properties are among the highest priorities in elementary particle physics and cosmology. The most likely candidate, a weakly interacting massive particle, could be produced in the high energy proton-proton collisions at the LHC. The analysis presented here is unique in looking for dark matter produced together with a Higgs boson that decays into its dominant decay mode, a pair of b quarks. If dark matter were seen in this mode, we would learn directly about the production mechanism because of the presence of the Higgs boson. This thesis develops the search technique and presents the most stringent production limit to date.

Search for Dark Matter in Association with a Higgs Boson Decaying Into B-quarks with the ATLAS Detector

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Release : 2020
Genre : Quarks
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Book Synopsis Search for Dark Matter in Association with a Higgs Boson Decaying Into B-quarks with the ATLAS Detector by : Andrea Matić

Download or read book Search for Dark Matter in Association with a Higgs Boson Decaying Into B-quarks with the ATLAS Detector written by Andrea Matić. This book was released on 2020. Available in PDF, EPUB and Kindle. Book excerpt:

Search for Production of Dark Matter in Association with a Higgs Boson Decaying to Bb with the ATLAS Detector

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Author :
Release : 2018
Genre :
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Book Synopsis Search for Production of Dark Matter in Association with a Higgs Boson Decaying to Bb with the ATLAS Detector by : Matthew Baca

Download or read book Search for Production of Dark Matter in Association with a Higgs Boson Decaying to Bb with the ATLAS Detector written by Matthew Baca. This book was released on 2018. Available in PDF, EPUB and Kindle. Book excerpt: Using 3.2 fb^-1 of sqrt(s) =13TeV proton-proton data collected in 2015 with the ATLAS detector at the Large Hadron Collider, new limits were imposed on the associated production of Dark Matter with a 125GeV Higgs boson which decays into a pair of b-quarks. The final state of the signal is a pair of b-quark jets and large Missing Transverse Momentum attributed to the DM escaping the detector. The dominant backgrounds were simulated. These were subject to selection requirements to increase signal to background ratio. Three regions were designated based on the number of leptons in the event. 0 lepton events made up the signal region. Events with 1 and 2 leptons were control regions. Similar selection requirements were applied to the control regions as in the signal region, in order to examine a similar phase space. A blinding region was established in the 0 lepton region over the mbb distribution to mask where a reconstructed 125GeV Higgs boson would appear. The control regions and the side bands in the signal region were then fit to the mbb data distribution. Unblinding of the signal region did not result in the discovery of the decay channel, but allowed limits to be imposed.

Search for Dark Matter Produced in Association with a Standard Model Higgs Boson Decaying Into B-quarks Using the Full Run 2 Dataset from the ATLAS Detector

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Release : 2021
Genre :
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Book Synopsis Search for Dark Matter Produced in Association with a Standard Model Higgs Boson Decaying Into B-quarks Using the Full Run 2 Dataset from the ATLAS Detector by : ATLAS Collaboration CERN

Download or read book Search for Dark Matter Produced in Association with a Standard Model Higgs Boson Decaying Into B-quarks Using the Full Run 2 Dataset from the ATLAS Detector written by ATLAS Collaboration CERN. This book was released on 2021. Available in PDF, EPUB and Kindle. Book excerpt:

Investigation of Higgs Boson Decaying to Di-muon, Dark Matter Produced in Association with a Higgs Boson Decaying to B-quarks and Unbinned Profiled Unfolding

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Release : 2023
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Book Synopsis Investigation of Higgs Boson Decaying to Di-muon, Dark Matter Produced in Association with a Higgs Boson Decaying to B-quarks and Unbinned Profiled Unfolding by : Jay Chan

Download or read book Investigation of Higgs Boson Decaying to Di-muon, Dark Matter Produced in Association with a Higgs Boson Decaying to B-quarks and Unbinned Profiled Unfolding written by Jay Chan. This book was released on 2023. Available in PDF, EPUB and Kindle. Book excerpt: The discovery of the Standard Model (SM) Higgs boson by ATLAS and CMS at the LHC in 2012 marked a major milestone in particle physics. However, many questions remain unanswered, which has led to an active research program to search for either rare SM phenomena or Beyond Standard Model (BSM) physics that involve the Higgs boson. In this dissertation, I present two example searches involving the Higgs boson, using proton-proton (pp) collision data collected by the ATLAS detector. The first search tackles the problem of how the SM Higgs couples to the second-generation fermions. It searches for the dimuon decay of the SM Higgs boson (H [arrow mu mu]) using data corresponding to an integrated luminosity of 139 fb-1 collected by the ATLAS detector in pp collisions at [square root]s = 13 TeV at the LHC. To identify this rare decay, we train boosted decision trees to separate signal and back- ground. We obtain an observed (expected) significance over the background-only hypothesis for a Higgs boson with a mass of 125.09 GeV of 2.0[sigma] (1.7[sigma]). The observed upper limit on the cross section times branching ratio for pp [arrow to] H [arrow to mu mu] is 2.2 times the SM prediction at 95% confidence level, while the expected limit on a H [arrow to mu mu] signal assuming the absence (presence) of a SM signal is 1.1 (2.0). The best-fit value of the signal strength parameter, defined as the ratio of the observed signal yield to the one expected in the SM, is [mu] = 1.2 [plus-minus] 0.6. In the second search, we look for Dark Matter produced in association with a Higgs boson decaying to b-quarks. This search uses the same dataset as the H [arrow to mu mu] search and targets events that contain large missing transverse momentum and either two b-tagged small-radius jets or a single large-radius jet associated with two b-tagged subjets. We split events into multiple categories that target different phase spaces of the Dark Matter signals. We do not observe a significant excess from the SM prediction. We interpret the results using two benchmark models with two Higgs doublets extended by either a heavy vector boson Z' (referred to as Z'-2HDM) or a pseudoscalar singlet a (referred to as 2HDM+a) that provide a Dark Matter candidate [chi]. For Z'-2HDM, the observed limits extend up to a Z' mass of 3.1 TeV at 95% confidence level for a mass of 100 GeV for the Dark Matter candidate. For 2HDM+a, we exclude masses of a up to 520 GeV and 240 GeV for tan [beta] = 1 and tan [beta] = 10, respectively, and for a Dark Matter mass of 10 GeV. Additionally, we set limits on the visible cross sections, which range from 0.05 fb to 3.26 fb, depending on the regions of missing transverse momentum and b-quark jet multiplicity. In addition to the two physics analyses, unfolding is a key procedure in the high energy experi- ments, which corrects data for the detector effect. I present a new unfolding method that allows to unfold data without having any artificial binning and is also able to profile nuisance parameters simultaneously. This new method provides much higher flexibility and increases the reusability for different downstream tasks compared to the traditional approach. It will benifit any future analyses including Higgs physics and Dark Matter searches.

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