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Quantum oscillations of neutral particles with the beauty quark

The development of quantum mechanics since the beginning of the 20th century has guided the exploration of nature at the atomic scale. The analysis of particles produced in cosmic rays and accelerators allowed to study the quantum mechanical behaviour of neutral mesons and gain insights into the fun...

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Autor principal: Veronesi, Michele
Lenguaje:eng
Publicado: 2021
Materias:
Acceso en línea:http://cds.cern.ch/record/2790773
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author Veronesi, Michele
author_facet Veronesi, Michele
author_sort Veronesi, Michele
collection CERN
description The development of quantum mechanics since the beginning of the 20th century has guided the exploration of nature at the atomic scale. The analysis of particles produced in cosmic rays and accelerators allowed to study the quantum mechanical behaviour of neutral mesons and gain insights into the fundamental quantum fields governing the interactions of matter. The measurement of wave-like properties, such as oscillation frequencies and interference patterns, is achieved by studying the rate of change of neutral particles into their anti-matter counterpart. This thesis presents the most precise measurement of the oscillation frequency of the $B^0_s$ meson, a neutral state made by the combination of a beauty and a strange quark, using data from the LHCb experiment. Since boson and fermion fields enter virtually in $B^0_s-\overline{B}^0_s$ transitions, the measurement of the $B^0_s$ oscillation frequency does not only offer a laboratory to study the beautiful quantum mechanical properties of the subatomic world, but also provides a gateway to the relativistic quantum fields constituting all elementary particles and fundamental interactions.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2021
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spelling cern-27907732021-11-22T21:21:42Zhttp://cds.cern.ch/record/2790773engVeronesi, MicheleQuantum oscillations of neutral particles with the beauty quarkParticle Physics - ExperimentThe development of quantum mechanics since the beginning of the 20th century has guided the exploration of nature at the atomic scale. The analysis of particles produced in cosmic rays and accelerators allowed to study the quantum mechanical behaviour of neutral mesons and gain insights into the fundamental quantum fields governing the interactions of matter. The measurement of wave-like properties, such as oscillation frequencies and interference patterns, is achieved by studying the rate of change of neutral particles into their anti-matter counterpart. This thesis presents the most precise measurement of the oscillation frequency of the $B^0_s$ meson, a neutral state made by the combination of a beauty and a strange quark, using data from the LHCb experiment. Since boson and fermion fields enter virtually in $B^0_s-\overline{B}^0_s$ transitions, the measurement of the $B^0_s$ oscillation frequency does not only offer a laboratory to study the beautiful quantum mechanical properties of the subatomic world, but also provides a gateway to the relativistic quantum fields constituting all elementary particles and fundamental interactions. CERN-THESIS-2021-193oai:cds.cern.ch:27907732021-11-17T09:46:06Z
spellingShingle Particle Physics - Experiment
Veronesi, Michele
Quantum oscillations of neutral particles with the beauty quark
title Quantum oscillations of neutral particles with the beauty quark
title_full Quantum oscillations of neutral particles with the beauty quark
title_fullStr Quantum oscillations of neutral particles with the beauty quark
title_full_unstemmed Quantum oscillations of neutral particles with the beauty quark
title_short Quantum oscillations of neutral particles with the beauty quark
title_sort quantum oscillations of neutral particles with the beauty quark
topic Particle Physics - Experiment
url http://cds.cern.ch/record/2790773
work_keys_str_mv AT veronesimichele quantumoscillationsofneutralparticleswiththebeautyquark