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3 produkter
3 produkter
1 409 kr
Skickas inom 5-8 vardagar
This book bridges a gap between two major communities of Condensed Matter Physics, Semiconductors and Superconductors, that have thrived independently. Through an original perspective that their key particles, excitons and Cooper pairs, are composite bosons, the authors raise fundamental questions of current interest: how does the Pauli exclusion principle wield its power on the fermionic components of bosonic particles at a microscopic level and how this affects the macroscopic physics? What can we learn from Wannier and Frenkel excitons and from Cooper pairs that helps us understand "bosonic condensation" of composite bosons and its difference from Bose-Einstein condensation of elementary bosons? The authors start from solid mathematical and physical foundation to derive excitons and Cooper pairs. They further introduce Shiva diagrams as a graphic support to grasp the many-body physics induced by fermion exchange - a novel mechanism not visualized by standard Feynman diagrams. Advanced undergraduate or graduate students in physics with no prior background will benefit from this book. The developed concepts and methodology should also be useful to present researches on ultracold atomic gases, exciton-polaritons, and quantum information.
595 kr
Skickas inom 5-8 vardagar
This book bridges a gap between two major communities of Condensed Matter Physics, Semiconductors and Superconductors, that have thrived independently. Using an original perspective that the key particles of these materials, excitons and Cooper pairs, are composite bosons, the authors raise fundamental questions of current interest: how does the Pauli exclusion principle wield its power on the fermionic components of bosonic particles at a microscopic level and how this affects their macroscopic physics? What can we learn from Wannier and Frenkel excitons and from Cooper pairs that helps us understand "bosonic condensation" of composite bosons and its difference from Bose-Einstein condensation of elementary bosons? The authors begin with a solid mathematical and physical foundation to derive excitons and Cooper pairs. They further introduce Shiva diagrams as a graphic support to grasp the many-body physics induced by fermion exchange in the absence of fermion-fermion interaction - a novel mechanism not visualized by standard Feynman diagrams. Advanced undergraduate or graduate students in physics with no specific background will benefit from this book. The developed concepts and formalism should also be useful for current research on ultracold atomic gases and exciton-polaritons, and quantum information.
Excitons, Photons, and Their Coupling
Interplay between Elementary and Composite Bosons
Inbunden, Engelska, 2026
987 kr
Kommande
This book embarks on an exploration of the interplay between excitons, which are the fundamental excitations in semiconductors, and photons, which are the electromagnetic quanta, providing fresh insights into light-matter interaction. Covering the basic principles of semiconductor electronic structures in a detailed yet accessible way, this book provides a pedagogical introduction to the various Coulomb interactions between electrons and holes, which are the two semiconductor key particles, as well as the mathematical tools to study their many-body effects. It untangles the tricky excitonic physics that develops from the interplay between Coulomb and electron-photon interactions, which differentiates bright from dark excitons or leads to the bosonic modes known as exciton-polaritons. A unique re-examination of well-established concepts, this book provides original presentations of fundamental questions, such as the polariton vacuum or the deceptively simple exciton creation through photon absorption. Whether you are a student eager to learn from step-by-step derivations or an experienced physicist seeking to refine your knowledge, this book will serve as an invaluable guide to mastering the microscopic physics of semiconductors, an important material in modern technologies.