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Titlebook: Introduction to Particle Cosmology; The Standard Model o Cosimo Bambi,Alexandre D. Dolgov Textbook 2016 Springer-Verlag GmbH Germany, part

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书目名称Introduction to Particle Cosmology
副标题The Standard Model o
编辑Cosimo Bambi,Alexandre D. Dolgov
视频video
概述Introduces the basic concepts and most recent discoveries in particle cosmology.Serves as an introductory textbook accessible even to students without a strong background in general relativity and qua
丛书名称UNITEXT for Physics
图书封面Titlebook: Introduction to Particle Cosmology; The Standard Model o Cosimo Bambi,Alexandre D. Dolgov Textbook 2016 Springer-Verlag GmbH Germany, part
描述.This book introduces the basic concepts of particle cosmology and covers all the main aspects of the Big Bang Model (expansion of the Universe, Big Bang Nucleosynthesis, Cosmic Microwave Background, large scale structures) and the search for new physics (inflation, baryogenesis, dark matter, dark energy). It also includes the majority of recent discoveries, such as the precise determination of cosmological parameters using experiments like WMAP and Planck, the discovery of the Higgs boson at LHC, the non-discovery to date of supersymmetric particles, and the search for the imprint of gravitational waves on the CMB polarization by Planck and BICEP..This textbook is based on the authors’ courses on Cosmology, and aims at introducing Particle Cosmology to senior undergraduate and graduate students. It has been especially written to be accessible even for those students who do not have a strong background in General Relativity and quantum field theory. The content of this book isorganized in an easy-to-use style and students will find it a helpful research guide..
出版日期Textbook 2016
关键词Big Bang Nucleosynthesis; Cosmic Extragalactic Polarization; Cosmic Microwave Background Radiation; Gra
版次1
doihttps://doi.org/10.1007/978-3-662-48078-6
isbn_softcover978-3-662-51587-7
isbn_ebook978-3-662-48078-6Series ISSN 2198-7882 Series E-ISSN 2198-7890
issn_series 2198-7882
copyrightSpringer-Verlag GmbH Germany, part of Springer Nature 2016
The information of publication is updating

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发表于 2025-3-21 22:35:46 | 显示全部楼层
General Relativity, This chapter provides a short review of important concepts and some technicalities of the gravitational theory. It can serve as a very brief introduction to the Einstein theory of gravity. It contains all the necessary material to understand the next chapters of this book. With this spirit, we foll
发表于 2025-3-22 04:11:19 | 显示全部楼层
The Standard Model of Particle Physics,al forces of Nature except gravity. It is the second fundamental ingredient of the Standard Model of cosmology. Here matter is described by fermions, spin-1/2 particles. Fermions are grouped into two classes, namely leptons and quarks, on the basis of their interaction properties. Leptons participat
发表于 2025-3-22 04:42:31 | 显示全部楼层
Cosmological Models, hypothesis, we can derive a number of cosmological models that differ by their matter content. In all the physically interesting cases, the Universe starts from an extremely dense and hot state. The onset of this hot initial state is called big bang. The rate of the expansion and the fate of the Un
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Big Bang Nuclesynthesis,ical predictions of the abundances of deuterium, helium-3, helium-4, and lithium-7 are determined by the Friedmann equations, the matter content of the Standard Model of particle physics, and a large number of particle properties and nuclear reaction rates that can be measured in laboratory. With al
发表于 2025-3-23 04:34:29 | 显示全部楼层
Dark Matter,ctuations of the CMB, suggests that most of the matter in the Universe does not emit electromagnetic radiation. This stuff is usually called dark matter and its nature is currently unknown. From the BBN, we can indeed infer that dark matter is unlikely made of ordinary particles (protons, neutrons,
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Cosmic Microwave Background,light elements. As the Universe expanded, at a certain point photons in the primordial plasma decoupled from protons and electrons and started freely propagating through the Universe. These are the photons we observe today in the CMB. The spectrum is extremely close to that of a black body with a te
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