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Lecture Notes in Physics - 996: The Theory of Direct Dark Matter Detection

A Guide to Computations

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  • 268 stron
  • 10 godzin czytania

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This book is a pedagogical guide on how to make computations in direct dark matter (DM) detection. The theory behind the calculation of direct detection cross sections and rates is presented, touching aspects related to elementary particle physics, hadronic physics, nuclear physics, and astrophysics. The book is structured in self-contained sections, covering several topics ranging from the scattering kinematics to the phenomenology of direct DM searches. It follows a model-independent approach, aiming at providing the readers with all that is needed to understand the theory and start their own analysis. Meant for graduate students and researchers with interests in particle physics and phenomenology, it is enriched with several worked examples from standard and non-standard particle DM models. Senior researchers working in different areas related to dark matter, like particle and nuclear physics, astrophysics, and cosmology, find in this book a useful and updated guide for reference.

Zakup książki

Lecture Notes in Physics - 996: The Theory of Direct Dark Matter Detection, Eugenio Del Nobile

Język
Rok wydania
2022
Oprawa
(miękka),
Stan książki
Dobry
Cena
250,76 zł

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Tytuł
Lecture Notes in Physics - 996: The Theory of Direct Dark Matter Detection
Podtytuł
A Guide to Computations
Język
angielski
Rok wydania
2022
Oprawa
miękka
Liczba stron
268
ISBN10
3030952274
ISBN13
9783030952273
Seria
Opis
This book is a pedagogical guide on how to make computations in direct dark matter (DM) detection. The theory behind the calculation of direct detection cross sections and rates is presented, touching aspects related to elementary particle physics, hadronic physics, nuclear physics, and astrophysics. The book is structured in self-contained sections, covering several topics ranging from the scattering kinematics to the phenomenology of direct DM searches. It follows a model-independent approach, aiming at providing the readers with all that is needed to understand the theory and start their own analysis. Meant for graduate students and researchers with interests in particle physics and phenomenology, it is enriched with several worked examples from standard and non-standard particle DM models. Senior researchers working in different areas related to dark matter, like particle and nuclear physics, astrophysics, and cosmology, find in this book a useful and updated guide for reference.