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Neutrino Oscillations: A Practical Guide to Basics and Applications: Lecture Notes in Physics, cartea 898

Autor Fumihiko Suekane
en Limba Engleză Paperback – apr 2015
Neutrino oscillation (N.O.) is the only firm evidence of the physics beyond the Standard Model of particle physics and is one of the hottest topics in elementary particle physics today. This book focuses on the N.O., from its history to the future prospects, from the basic theories to the experiments.
Various phenomena of N.O. are described intuitively with thorough explanations of the fundamental physics behind well-known formulations. For example, while many textbooks start with a discussion of the mixing matrix, this book stresses that N.O. is caused by the transition amplitudes between different neutrino flavors, and that the purpose of N.O. experiments is to measure transition amplitudes and think of its origin. The current understanding of neutrino oscillation is also summarized using the most up-to-date measurements, including the recently measured neutrino mixing angle θ13, and the future prospects of N.O. studies are described as well.
The level ofthis book makes it a bridge between introductory textbooks and scientific papers.
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Specificații

ISBN-13: 9784431554615
ISBN-10: 4431554610
Pagini: 190
Ilustrații: XIV, 185 p. 88 illus., 42 illus. in color.
Dimensiuni: 155 x 235 x 12 mm
Greutate: 0.29 kg
Ediția:2015
Editura: Springer
Colecția Springer
Seria Lecture Notes in Physics

Locul publicării:Tokyo, Japan

Public țintă

Research

Cuprins

Introduction.- Neutrinos and Weak Interactions in the Standard Model.- Particle Oscillations.- Neutrino Oscillation.- Experiments.- Present Status.- Future Possibilities of Neutrino Oscillation Experiments.- Appendix.

Recenzii

“This is a detailed and up-to-date textbook on neutrino oscillations. … The textbook contains all of the information that anybody interested in neutrino oscillations would like to know. Physicists involved in neutrino experiments should each have a copy in their private libraries.” (Luigi Di Lella, CERN Courier, cerncourier.com, August, 2016)

Notă biografică

The author, Dr. Fumihiko Suekane, is an associate professor of Research Center for Neutrino Science, Tohoku University, Japan. He is an elementary particle physicist. He contributed for the discovery of the reactor neutrino oscillation as a core member of the KamLAND experiment. He was awarded Koshiba prize and Breakthrough prize for the achievement. He is now measuring the last neutrino mixing angle θ13 as a member of the Double Chooz experiment. He is also interested in teaching intuitive particle physics to students and has given a number of lectures for universities and topical schools. This book is one of the outcomes of those activities.
He was selected as  Blaise Pascal Chairs, France in 2016 for promotion of neutrino science. 

Textul de pe ultima copertă

Neutrino oscillation (N.O.) is the only firm evidence of the physics beyond the Standard Model of particle physics and is one of the hottest topics in elementary particle physics today. This book focuses on the N.O., from its history to the future prospects, from the basic theories to the experiments.    
Various phenomena of N.O. are described intuitively with thorough explanations of the fundamental physics behind well-known formulations. For example, while many textbooks start with a discussion of the mixing matrix, this book stresses that N.O. is caused by the transition amplitudes between different neutrino flavors, and that the purpose of N.O. experiments is to measure transition amplitudes and think of its origin. The current understanding of neutrino oscillation is also summarized using the most up-to-date measurements, including the recently measured neutrino mixing angle θ13, and the future prospects of N.O. studies are described as well.
The levelof this book makes it a bridge between introductory textbooks and scientific papers.

Caracteristici

Contains detailed descriptions of experiments, from motivation to results including very recent discoveries Gives a complete derivation of important formulas such as three-flavor oscillation and matter effect Contains many examples to explain the formalism of neutrino oscillation phenomena Includes supplementary material: sn.pub/extras