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Vladimir I. Man’ko

Researcher at Moscow Institute of Physics and Technology

Publications -  680
Citations -  14719

Vladimir I. Man’ko is an academic researcher from Moscow Institute of Physics and Technology. The author has contributed to research in topics: Quantum state & Probability distribution. The author has an hindex of 53, co-authored 665 publications receiving 13825 citations. Previous affiliations of Vladimir I. Man’ko include Lebedev Physical Institute & Tomsk State University.

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Statistical properties of Schrödinger real and imaginary cat states

TL;DR: In this paper, the photon statistics in superpositions of coherent states |α| and |α ∗ ∗ 〉 named ''Schrodinger real and im cat states'' were studied.
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Hidden Quantum Correlations in Single Qudit Systems

TL;DR: The notion of hidden quantum correlations was introduced in this article, where the mean values of observables depending on one classical random variable described by the probability distribution in the form of correlation functions of two (three, etc.) random variables described by corresponding joint probability distributions was introduced.
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Contractions of the irreducible representations of the quantum algebras suq(2) and soq(3)

TL;DR: In this paper, the contractions of the irreducible representations of the unitary quantum algebra suq(2) and the orthogonal quantum algebra soq(3) in the Gel'fand-Tsetlin basis are regarded in detail with the help of the dual numbers.
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Maps of Matrices and Portrait Maps of the Density Operators of Composite and Noncomposite Systems

TL;DR: In this article, the matrix portrait of arbitrary N × N matrices is described as an analog of the partial tracing of density matrices of multipartite qudit systems. And the structure of the maps is inspired by the portrait map of the probability vectors corresponding to the action on the vectors by stochastic matrices containing either unity or zero matrix elements.
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Coherent states for particle beams in the thermal wave model

TL;DR: In this article, the authors introduce the concept of coherent states for charged particle beams in the framework of the Thermal Wave Model (TWM) and give a physical meaning of the Gaussian-like coherent structures of charged particle distribution that are both naturally and artificially produced in an accelerating machine.