Showing results for "sergey v polyakov"
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Single-Photon Generation and Detection
Physics and Applications
2013
EN
Single-photon generation and detection is at the forefront of modern optical physics research. This book is intended to provide a comprehensive overview of the current status of single-photon techniques and research methods in the spectral region from the visible to the infrared. The use of single photons, produced on demand with well-defined quantum properties, offers an unprecedented set of capabilities that are central to the new area of quantum information and are of revolutionary impo...
Objective Mental Reality - The ‘Dark Matter' of the Social Sciences
The Psychological and Specialized Parts of Objective Mental Reality
- Translated by
- Ben HoosonSimon Geoghegan
2026
EN
Accessible
This book explores the concept of Objective Mental Reality (OMR)—a fundamental, intersubjectively formed symbolic layer of consciousness. In Part I, it delves into foundational psychological constructions such as the soul, mind, consciousness, and intelligence, as well as the nuanced roles of personality, beliefs, and cultural codes. These entities are examined not only as subjective experiences but as components of a shared mental reality that can be studied objectively. The section furth...
Objective Mental Reality- The 'Dark Matter' of the Social Sciences
Volume 1: The Physical and Social Spheres
2026
EN
Accessible
The book offers a philosophical and cognitive justification for the author's concept of Objective Mental Reality (OMR), which links individual consciousness with society's intersubjective understanding of the world.The first part of the book explains why the concept of OMR is essential to modern science. Objects and phenomena do not exist for humans in isolation: they are formed in consciousness as mental representations and only in OMR do they acquire the status of real entitie...
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2012
EN
This book reviews up-to-date ideas of how the luminescence radiation in semiconductors originates and how to analyze it experimentally. The book fills a gap between general textbooks on optical properties of solids and specialized monographs on luminescence. It is unique in its coherent treatment of the phenomenon of luminescence from the very introductory definitions, from light emission in bulk crystalline and amorphous materials to the advanced chapters that deal with semiconductor nano...
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- In a Nutshell
2008
EN
Covering the fundamentals as well as many special topics of current interest, this is the most concise, up-to-date, and accessible graduate-level textbook on quantum mechanics available. Written by Gerald Mahan, a distinguished research physicist and author of an acclaimed textbook on many-particle physics, Quantum Mechanics in a Nutshell is the distillation of many years' teaching experience.Emphasizing the use of quantum mechanics to describe actual quantum systems such ...
Ultracold Atoms in Optical Lattices
Simulating quantum many-body systems
2012
EN
Quantum computers, though not yet available on the market, will revolutionize the future of information processing. Quantum computers for special purposes like quantum simulators are already within reach. The physics of ultracold atoms, ions and molecules offer unprecedented possibilities of control of quantum many body systems and novel possibilities of applications to quantum information processing and quantum metrology. Particularly fascinating is the possibility of using ultracold atom...
2011
EN
Principles and Applications of ESR Spectroscopy fills the gap between the detailed monographs in ESR spectroscopy and the general textbooks in molecular physics, physical chemistry, biochemistry or spectroscopy. The latter only briefly explain the underlying theory and do not provide details about applications, while the currently available ESR textbooks are primarily focused on the technique as such.This text is based upon the authors’ long experience of teaching the subject to a ...
2010
EN
Principles of Laser Spectroscopy and Quantum Optics is an essential textbook for graduate students studying the interaction of optical fields with atoms. It also serves as an ideal reference text for researchers working in the fields of laser spectroscopy and quantum optics.The book provides a rigorous introduction to the prototypical problems of radiation fields interacting with two- and three-level atomic systems. It examines the interaction of radiation with both atomic...
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- Physics and Astronomy (R0)
2017
EN
This thesis reports the remarkable discovery that, by arranging the dipoles in an ordered array with particular spacings, it is possible to greatly enhance the cross-section and achieve a strong light-matter coupling (>98% of the incident light). It also discusses the broad background to cooperative behaviour in atomic ensembles, and analyses in detail effects in one- and two-dimensional atomic arrays. In general, when light interacts with matter it excites electric dipoles and since the n...
2012
EN
This volume is the third edition of the first-ever elementary book on the Langevin equation method for the solution of problems involving the translational and rotational Brownian motion of particles and spins in a potential highlighting modern applications in physics, chemistry, electrical engineering, and so on. In order to improve the presentation, to accommodate all the new developments, and to appeal to the specialized interests of the various communities involved, the book has been e...
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- Oxford Graduate Texts
2014
EN
Quantum Electronics for Atomic Physics provides a course in quantum electronics for researchers in atomic physics and other related areas such as telecommunications. The book covers the usual topics, such as Gaussian beams, lasers, nonlinear optics and modulation techniques, but also includes a number of areas not usually found in a textbook on quantum electronics. Among the latter are such practical matters as the enhancement of nonlinear processes in a build-up cavity or periodi...
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- Physics and Astronomy (R0)
2017
EN
This thesis presents optical methods to split the energy levels of electronic valleys in transition-metal dichalcogenides (TMDs) by means of coherent light-matter interactions. The electronic valleys found in monolayer TMDs such as MoS2, WS2, and WSe2 are among the many novel properties exhibited by semiconductors when thinned down to a few atomic layers, and have have been proposed as a new way to carry information in next generation devices (so-called valleytronics). These valleys are, h...











