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Titlebook: Quantum Information with Continuous Variables; Samuel L. Braunstein,Arun K. Pati Book 2003 Springer Science+Business Media New York 2003 P

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书目名称Quantum Information with Continuous Variables
编辑Samuel L. Braunstein,Arun K. Pati
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图书封面Titlebook: Quantum Information with Continuous Variables;  Samuel L. Braunstein,Arun K. Pati Book 2003 Springer Science+Business Media New York 2003 P
描述.Quantum information may sound like science fiction but is, in fact, an active and extremely promising area of research, with a big dream: to build a quantum computer capable of solving problems that a classical computer could not even begin to handle. Research in quantum information science is now at an advanced enough stage for this dream to be credible and well-worth pursuing. It is, at the same time, too early to predict how quantum computers will be built, and what potential technologies will eventually strike gold in their ability to manipulate and process quantum information. ..One direction that has reaped many successes in quantum information processing relies on continuous variables. This area is bustling with theoretical and experimental achievements, from continuous-variable teleportation, to in-principle demonstrations of universal computation and efficient error correction. Now the time has come to compile some of the major results into one volume. In this book the leading researchers of the field present up-to-date developments of continuous-variable quantum information. This book is organized to suit many reader levels with introductions to every topic and in-depth
出版日期Book 2003
关键词Potential; Processing; algorithms; communication; computer; distribution; information processing; optics; qu
版次1
doihttps://doi.org/10.1007/978-94-015-1258-9
isbn_softcover978-90-481-6255-0
isbn_ebook978-94-015-1258-9
copyrightSpringer Science+Business Media New York 2003
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Efficient Classical Simulation of Continuous Variable Quantum Information Processesing theorem is an extension of the Gottesman-Knill theorem to continuous variable quantum information. For a collection of harmonic oscillators, any quantum process that begins with unentangled Gaussian states, performs only transformations generated by Hamiltonians that are quadratic in the canonic
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Teleportation of Continuous Quantum Variableses. The entanglement fidelity of the scheme is computed, including the roles of finite quantum correlation and nonideal detection efficiency. A protocol is presented for teleporting the wave function of a single mode of the electromagnetic field with high fidelity using squeezed-state entanglement a
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Experimental Realization of Continuous Variable Teleportationion” contained in a quantum state is transferred from a sending station (Alice) to a receiving station (Bob), with the original quantum state thereby reconstructed at Bob’s place with the received information and previously shared entanglement. Note that it is impossible to perform the state transfo
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Inseparability Criterion for Continuous Variable Systemst importance is then to check whether a continuous variable state, generally mixed, is entangled (inseparable). For discrete systems, there is the Peres-Horodecki inseparability criterion [1,2], based on the negativity of the partial transpose of the composite density operator. This negativity provi
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Separability Criterion for Gaussian Statestranspose operation admits, in the Wigner representation of quantum mechanics, a geometric interpretation as momentum reversl or mirror reflection in phase space. This recognition leads to uncertainty principles, stronger than the traditional ones, to be obeyed by all PPT (separable as well as bound
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