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Cohen L., Poor H.V., Scully M.O. (Eds.) Classical, Semi-classical and Quantum Noise

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Cohen L., Poor H.V., Scully M.O. (Eds.) Classical, Semi-classical and Quantum Noise
Springer Science+Business Media, LLC, 2012. – 301 p. – ISBN: 1441966234
David Middleton was a towering figure of 20th Century engineering and science and one of the founders of statistical communication theory. During the second World War, the young David Middleton, working with Van Fleck, devised the notion of the matched filter, which is the most basic method used for detecting signals in noise. Over the intervening six decades, the contributions of Middleton have become classics. This collection of essays by leading scientists, engineers and colleagues of David are in his honor and reflect the wide influence that he has had on many fields. Also included is the introduction by Middleton to his forthcoming book, which gives a wonderful view of the field of communication, its history and his own views on the field that he developed over the past 60 years. Focusing on classical noise modeling and applications, Classical, Semi-Classical and Quantum Noise includes coverage of statistical communication theory, non-stationary noise, molecular footprints, noise suppression, Quantum error correction, and other related topics.
David Middleton
Sequential Bayesian Detection: A Model-Based Approach
The Propagation of Noise Fields in a Dispersive Medium
How Does Noise Affect a Quantum State?
Graph Theoretic Methods in Coding Theory
The Statistics of the Atomic Clock Noise
Effect of Noise on Quantized Adiabatic Charge Transport in 2D Electron Systems and Nanotubes
The Ubiquitous Matched Filter: A Tutorial and Application to Radar Detection
Noise-Driven Informatics: Secure Classical Communications via Wire and Noise-Based Computing
Denoising and Time-Frequency Analysis of Signals
Electromagnetically Induced Transparency with Fields Spectrally Broadened by Phase Noise
Multiple-Access Interference
Classical Capacities of Bosonic Channels
The Physics of Ghost Imaging
Milestones in the History of Probability
Fluctuationsin TwoComponentInteractingBose–Einstein Condensate
Entanglement Criteria for Continuous-Variable Systems
Quantum Carpets: Factorization with Degeneracies
Co-channel Interference Modeling and Analysis in a Poisson Field of Interferers in Wireless Communications
Introduction to: “Elements of Non-Gaussian Space-Time Statistical Communication Theory, Propagation, Noise, and Signal Processing in the Canonical Channel”
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