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Titlebook: Astroparticle Physics: Theory and Phenomenology; Günter Sigl Book 2017 Atlantis Press and the author(s) 2017 High Energy Astroparticle Phy

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楼主: fitful
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Electroweak Interactions and Neutrinoslopment. Special emphasize will be put on neutrino physics since it plays an important role in high energy astroparticle physics as will be developed in detail in part IV. At this occasion we will also develop and summarize some general concepts in particle physics such as quantum fields and represe
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The Fundamental Gauge Interactions and Their Descriptionf these interactions in a broader and more formal context together with the other known fundamental interactions. We start with general aspects of divergences in the effective description of the electroweak interactions and their relation to renormalization in quantum field theory. We then turn to t
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The Universe Between Today and First Light after the big bang, when it was smaller than today by a factor ., and today, in roughly inverse chronological order. We start with the physics of the observable sources, namely stars which are powered by nuclear fusion, and objects powered by the accretion of gas onto compact objects such as neutro
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Detection Techniques and Experimental Resultsncludes the development of the most relevant aspects of air shower physics. The second part then summarizes the current experimental situation and the main open questions, roughly separated for cosmic radiation of Galactic and extragalactic origin. The following chapters will then provide the theore
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Electromagnetic Radiation in Astrophysicsenergy astrophysics. More comprehensive reviews on electromagnetic processes can be found in standard textbooks, e.g. Refs. [230, 528], and also in Ref. [529]. In the second part we will apply this to the main scenarios and models of .ray sources, separated into Galactic and extragalactic sources.
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Neutrino Propertiesigenstates, the so-called neutrino mixing, and how the transition rates behave under . and . transformations. We also discuss the so far open question whether neutrinos are identical to their antiparticles or not, and thus whether they are Majorana or Dirac fermions. This has a strong influence on t
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