Dark matter: signs and genesis

<p align="justify">The success of Big Bang Nucleosynthesis (BBN) combined with the detailed analysis of the small imperfections of the Cosmic Microwave Background blackbody spectrum lead to the conclusion that most of the matter content of our universe is made of some non-baryonic ma...

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Main Author: Lopez Honorez, Laura
Other Authors: Tytgat, Michel
Format: Doctoral Thesis
Language:fr
Published: Universite Libre de Bruxelles 2007
Subjects:
Online Access:https://dipot.ulb.ac.be/dspace/bitstream/2013/210692/1/dc09e1dd-964a-422f-9f9a-3d4419d4405b.txt
https://dipot.ulb.ac.be/dspace/bitstream/2013/210692/4/e07112e3-d12a-4be1-a0c8-2707de442dbb.txt
http://hdl.handle.net/2013/ULB-DIPOT:oai:dipot.ulb.ac.be:2013/210692
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spelling ndltd-ulb.ac.be-oai-dipot.ulb.ac.be-2013-2106922021-06-30T05:14:16Z info:eu-repo/semantics/doctoralThesis info:ulb-repo/semantics/doctoralThesis info:ulb-repo/semantics/openurl/vlink-dissertation Dark matter: signs and genesis Matière noire: signes et genèse Lopez Honorez, Laura Tytgat, Michel Henneaux, Marc Hambye, Thomas Clerbaux, Barbara Orloff, Jean Gerard, Jean L. Frère, Jean-Marie Universite Libre de Bruxelles Université libre de Bruxelles, Faculté des Sciences – Physique, Bruxelles 2007-06-26 fr <p align="justify">The success of Big Bang Nucleosynthesis (BBN) combined with the detailed analysis of the small imperfections of the Cosmic Microwave Background blackbody spectrum lead to the conclusion that most of the matter content of our universe is made of some non-baryonic material, the dark matter!</p><p><p><p align="justify">In this thesis, we review the compiling indications of dark matter and the so-called freeze-out mechanism which may settle the relic density of the species in the framework of the standard Big Bang model. We also examine principally two methods of detection of dark matter, direct and indirect detection searches.</p><p><p><p align="justify">Let us stress that the Standard Model on its own is unable to provide enough aspirants for the role of dark matter. As a consequence, one has to dig into the tremendous domain of physics "Beyond the Standard Model" in order to have a chance to elucidate the problem of the missing mass.</p><p><p><p align="justify">In this thesis in particular, we consider the Inert Doublet Model (IDM) which includes an additional Higgs doublet, enclosing two neutral scalars candidates for dark matter. We invoke the Standard freeze-out mechanism for the production of dark matter. We get then dark matter candidates in two rather separate mass ranges, one between 40 and 80 GeV, the other one between 400 GeV and 1 TeV. We also show that dark matter annihilation at the galactic center can be at the origin of a gamma-ray flux which can be probed by the future GLAST experiment.</p><p><p><p align="justify">We address a low reheating temperature scenario for the genesis of dark matter in a Left-Right symmetric extension of the Standard Model. The candidate for dark matter is a MeV right-handed neutrino and we show that a baryon-dark matter interaction at the galactic center can be the source of the low energy positrons responsible for the 511 keV gamma-ray excess observed by the INTEGRAL experiment in the galactic bulge region.</p><p><p><p align="justify">Finally, prompted by the possibility to explain the baryon and dark matter rather similar abundances by one single "Matter Genesis" mechanism, we study a non-thermal production mechanism for dark matter. The framework is also Left-Right symmetric and dark candidate is a ~3 GeV right handed neutrino.</p> <p><p> Sciences exactes et naturelles Physique Cosmology Dark matter (Astronomy) Neutrinos Gamma rays Cosmologie Matière sombre (Astronomie) Neutrinos Rayons gamma dark matter cosmology neutrinos gamma-rays 1 v. (142 p.) Doctorat en Sciences info:eu-repo/semantics/nonPublished local/bictel.ulb.ac.be:ULBetd-06042007-143533 local/ulbcat.ulb.ac.be:792157 https://dipot.ulb.ac.be/dspace/bitstream/2013/210692/1/dc09e1dd-964a-422f-9f9a-3d4419d4405b.txt https://dipot.ulb.ac.be/dspace/bitstream/2013/210692/4/e07112e3-d12a-4be1-a0c8-2707de442dbb.txt http://hdl.handle.net/2013/ULB-DIPOT:oai:dipot.ulb.ac.be:2013/210692 2 full-text file(s): application/pdf | application/pdf 2 full-text file(s): info:eu-repo/semantics/openAccess | info:eu-repo/semantics/openAccess
collection NDLTD
language fr
format Doctoral Thesis
sources NDLTD
topic Sciences exactes et naturelles
Physique
Cosmology
Dark matter (Astronomy)
Neutrinos
Gamma rays
Cosmologie
Matière sombre (Astronomie)
Neutrinos
Rayons gamma
dark matter
cosmology
neutrinos
gamma-rays
spellingShingle Sciences exactes et naturelles
Physique
Cosmology
Dark matter (Astronomy)
Neutrinos
Gamma rays
Cosmologie
Matière sombre (Astronomie)
Neutrinos
Rayons gamma
dark matter
cosmology
neutrinos
gamma-rays
Lopez Honorez, Laura
Dark matter: signs and genesis
description <p align="justify">The success of Big Bang Nucleosynthesis (BBN) combined with the detailed analysis of the small imperfections of the Cosmic Microwave Background blackbody spectrum lead to the conclusion that most of the matter content of our universe is made of some non-baryonic material, the dark matter!</p><p><p><p align="justify">In this thesis, we review the compiling indications of dark matter and the so-called freeze-out mechanism which may settle the relic density of the species in the framework of the standard Big Bang model. We also examine principally two methods of detection of dark matter, direct and indirect detection searches.</p><p><p><p align="justify">Let us stress that the Standard Model on its own is unable to provide enough aspirants for the role of dark matter. As a consequence, one has to dig into the tremendous domain of physics "Beyond the Standard Model" in order to have a chance to elucidate the problem of the missing mass.</p><p><p><p align="justify">In this thesis in particular, we consider the Inert Doublet Model (IDM) which includes an additional Higgs doublet, enclosing two neutral scalars candidates for dark matter. We invoke the Standard freeze-out mechanism for the production of dark matter. We get then dark matter candidates in two rather separate mass ranges, one between 40 and 80 GeV, the other one between 400 GeV and 1 TeV. We also show that dark matter annihilation at the galactic center can be at the origin of a gamma-ray flux which can be probed by the future GLAST experiment.</p><p><p><p align="justify">We address a low reheating temperature scenario for the genesis of dark matter in a Left-Right symmetric extension of the Standard Model. The candidate for dark matter is a MeV right-handed neutrino and we show that a baryon-dark matter interaction at the galactic center can be the source of the low energy positrons responsible for the 511 keV gamma-ray excess observed by the INTEGRAL experiment in the galactic bulge region.</p><p><p><p align="justify">Finally, prompted by the possibility to explain the baryon and dark matter rather similar abundances by one single "Matter Genesis" mechanism, we study a non-thermal production mechanism for dark matter. The framework is also Left-Right symmetric and dark candidate is a ~3 GeV right handed neutrino.</p> <p><p> === Doctorat en Sciences === info:eu-repo/semantics/nonPublished
author2 Tytgat, Michel
author_facet Tytgat, Michel
Lopez Honorez, Laura
author Lopez Honorez, Laura
author_sort Lopez Honorez, Laura
title Dark matter: signs and genesis
title_short Dark matter: signs and genesis
title_full Dark matter: signs and genesis
title_fullStr Dark matter: signs and genesis
title_full_unstemmed Dark matter: signs and genesis
title_sort dark matter: signs and genesis
publisher Universite Libre de Bruxelles
publishDate 2007
url https://dipot.ulb.ac.be/dspace/bitstream/2013/210692/1/dc09e1dd-964a-422f-9f9a-3d4419d4405b.txt
https://dipot.ulb.ac.be/dspace/bitstream/2013/210692/4/e07112e3-d12a-4be1-a0c8-2707de442dbb.txt
http://hdl.handle.net/2013/ULB-DIPOT:oai:dipot.ulb.ac.be:2013/210692
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