<?xml version="1.0" encoding="UTF-8"?><?xml-stylesheet type="text/xsl" href="static/style.xsl"?><OAI-PMH xmlns="http://www.openarchives.org/OAI/2.0/" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://www.openarchives.org/OAI/2.0/ http://www.openarchives.org/OAI/2.0/OAI-PMH.xsd"><responseDate>2026-09-19T23:15:28Z</responseDate><request verb="GetRecord" identifier="oai:dspace.mit.edu:1721.1/157874" metadataPrefix="dim">https://dspace.mit.edu/server/oai/request</request><GetRecord><record><header><identifier>oai:dspace.mit.edu:1721.1/157874</identifier><datestamp>2024-12-19T04:21:11Z</datestamp><setSpec>com_1721.1_7582</setSpec><setSpec>com_1721.1_7581</setSpec><setSpec>col_1721.1_131022</setSpec></header><metadata><dim:dim xmlns:dim="http://www.dspace.org/xmlns/dspace/dim" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns:doc="http://www.lyncode.com/xoai" xsi:schemaLocation="http://www.dspace.org/xmlns/dspace/dim http://www.dspace.org/schema/dim.xsd">
   <dim:field mdschema="dc" element="contributor" qualifier="advisor">Paus, Christoph M. E.</dim:field>
   <dim:field mdschema="dc" element="contributor" qualifier="author">Yang, Tianyu Justin</dim:field>
   <dim:field mdschema="dc" element="contributor" qualifier="department">Massachusetts Institute of Technology. Department of Physics</dim:field>
   <dim:field mdschema="dc" element="date" qualifier="accessioned">2024-12-18T18:17:41Z</dim:field>
   <dim:field mdschema="dc" element="date" qualifier="available">2024-12-18T18:17:41Z</dim:field>
   <dim:field mdschema="dc" element="date" qualifier="issued">2024-09</dim:field>
   <dim:field mdschema="dc" element="date" qualifier="submitted">2024-09-12T18:42:52.762Z</dim:field>
   <dim:field mdschema="dc" element="identifier" qualifier="uri">https://hdl.handle.net/1721.1/157874</dim:field>
   <dim:field mdschema="dc" element="description" qualifier="abstract">The mass of the W boson, mW, is an important fundamental constant of nature, which&#xd;
is also potentially sensitive to a plethora of physics beyond the Standard Model. In this&#xd;
thesis, we discuss the precision measurement of mW with the CMS detector at the LHC in&#xd;
proton-proton collisions at √s = 13 TeV. The phenomenology of W bosons produced in pp&#xd;
collisions, the CMS detector characteristics, and other relevant factors are examined to justify&#xd;
the overall strategy to measure mW from the muon transverse momentum and pseudorapidity&#xd;
spectrum [formula] in the W → µν channel with a part of the 2016 data corresponding&#xd;
to an integrated luminosity of 16.8 fb⁻¹. Dedicated studies aiming to reduce systematic&#xd;
uncertainties related to the muon transverse momentum calibration, the muon reconstruction&#xd;
and background rejection efficiencies, and the modeling of the W boson production and decay&#xd;
kinematics are presented. A profiled maximum-likelihood fit of MC templates to observed&#xd;
data incorporating over 4,000 nuisance parameters is employed to extract the central value&#xd;
and the total uncertainty on m_W. The result of this measurement is m_W = 80, 360.2 ± 2.4 (stat.) ± 9.6 (syst.) MeV,= 80, 360.2 ± 9.9 MeV, which is consistent with the standard model prediction m(SM/W) = 80, 354.5 ± 5.7 MeV.</dim:field>
   <dim:field mdschema="dc" element="description" qualifier="degree">Ph.D.</dim:field>
   <dim:field mdschema="dc" element="publisher">Massachusetts Institute of Technology</dim:field>
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   <dim:field mdschema="dc" element="title">Precision measurement of the W boson mass with the CMS Experiment in pp collisions at √s = 13 TeV</dim:field>
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   	&lt;Title>Precision measurement of the W boson mass with the CMS Experiment in pp collisions at √s = 13 TeV&lt;/Title>
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   	&lt;PublicationDate>2024-09&lt;/PublicationDate>
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        	&lt;DisplayName>Yang, Tianyu Justin&lt;/DisplayName>
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            &lt;DisplayName>Massachusetts Institute of Technology&lt;/DisplayName>
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   	&lt;Abstract>The mass of the W boson, mW, is an important fundamental constant of nature, which&#xd;
is also potentially sensitive to a plethora of physics beyond the Standard Model. In this&#xd;
thesis, we discuss the precision measurement of mW with the CMS detector at the LHC in&#xd;
proton-proton collisions at √s = 13 TeV. The phenomenology of W bosons produced in pp&#xd;
collisions, the CMS detector characteristics, and other relevant factors are examined to justify&#xd;
the overall strategy to measure mW from the muon transverse momentum and pseudorapidity&#xd;
spectrum [formula] in the W → µν channel with a part of the 2016 data corresponding&#xd;
to an integrated luminosity of 16.8 fb⁻¹. Dedicated studies aiming to reduce systematic&#xd;
uncertainties related to the muon transverse momentum calibration, the muon reconstruction&#xd;
and background rejection efficiencies, and the modeling of the W boson production and decay&#xd;
kinematics are presented. A profiled maximum-likelihood fit of MC templates to observed&#xd;
data incorporating over 4,000 nuisance parameters is employed to extract the central value&#xd;
and the total uncertainty on m_W. The result of this measurement is m_W = 80, 360.2 ± 2.4 (stat.) ± 9.6 (syst.) MeV,= 80, 360.2 ± 9.9 MeV, which is consistent with the standard model prediction m(SM/W) = 80, 354.5 ± 5.7 MeV.&lt;/Abstract>
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