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The book provides a unifying insight into fluctuation phenomena in a broad variety of vibrational systems of current interest. It consists of individual chapters written by leading experts in the field. The chapters are self-contained and complement each other. The ongoing rapid development of well-characterized mesoscopic vibrational systems has made it possible to address fundamental physics problems and to explore new approaches to quantum and classical measurements, with applications to quantum information, condensed matter physics, and engineering. The book gives an account of major results in this direction. The topics include dynamics and quantum control of microcavity modes coupled to qubits, measurements with bifurcation-based amplifiers and new types of such amplifiers; switching rate scaling and new quantum mechanisms of metastable decay; wave mixing and parametric excitation in the quantum regime; collective phenomena and the interaction-induced discrete time symmetry breaking; and back-action and shot noise in electron-vibrational systems.
This volume investigates the complex dynamics of fluctuating nonlinear oscillators across scales ranging from nanomechanical systems to quantum superconducting circuits. Edited by Mark Dykman, the text compiles contributions from leading researchers to provide a unified framework for understanding fluctuation phenomena. The book synthesizes theoretical advancements with experimental observations to address fundamental challenges in classical and quantum measurements, offering a comprehensive overview of how these systems behave under various physical constraints.
What You Will Find
Experts recognize this collection as a rigorous reference for researchers working at the intersection of mesoscopic physics and quantum engineering. Readers frequently note the technical density of the prose, which assumes a strong background in advanced physics and mathematics.
Page Count:
456
Publication Date:
2012-09-29
Publisher:
Oxford University Press
ISBN-10:
019969138X
ISBN-13:
9780199691388
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