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Efficient verification of quantum states and gates is crucial to the development of quantum technologies. Although the sample complexities of quantum state verification and quantum gate verification h...
To the human eye, most stationary objects appear to be just that still, and completely at rest. Yet if we were handed a quantum lens, allowing us to see objects at the scale of individual atoms, wha...
Abstract: Spin current of a Dirac particle is shown to be given by the geometric phase and in terms of the later, a closed form expression is obtained for the dissipationlessness of the spin current.
We obtain a simple derivation of the optimal quantum state estimation of a two-level system using the no-signaling principle. In particular, we show that the no-signaling principle determines the uni...
This paper presents the uncertainty related to position and momentum localization of a quantum state in terms of entropic uncertainty relations. We slightly improve the inequality given in [Phys. Rev....
We study a coherent superposition tˆa + rˆa† of field annihilation and creation operator acting on continuous variable systems and propose its application for quantum state engineering...
We propose and solve a simple but very general quantum model of an SU(2)spin interacting with a large external system with N states. The coupling is described by a random hamiltonian in a new general ...
We present a constructive control scheme for solving quantum state engineering problems based on a parametrization of the state vector in terms of complex hyperspherical coordinates. Unlike many contr...
We propose a kind of reverse Kochen-Specker theorem that amounts to generating orthomodular lattices (OMLs) with exactly one state that do not admit properties of the Hilbert space. We apply MMP algor...
We propose and analyze a multi-functional setup consisting of high finesse optical cavities, beam splitters, and phase shifters. The basic scheme projects arbitrary photonic two-mode input states onto...
A theory of quantum state reduction is advanced. It is based on two principles: (1) Gauge decomposition; (2) Maximum entropy. To wit: (1) The reduction decomposition of a state vector is the Schmidt d...
2001Vol.36No.3pp.335-338DOI: Quantum-State Engineering of Multiple Trapped Ions for Center-of-Mass Mode ZENG Hao-Sheng,1,2 KUANG Le-Man,2 ZHU Xi-Wen1 and GAO Ke-Lin1 1 L...
2007Vol.47No.4pp.629-632DOI: A Method for Transferring an Unknown Quantum State and Its Application YAN Feng-Li1,2 and HUO Hai-Rui1 1 College of Physics and Informatio...
2007Vol.47No.2pp.257-260DOI: Scheme for Teleportation of a Multipartite Quantum State by Using a Single Entangled Pair as Quantum Channel WANG Xin-Wen,1 WANG Zhi-Yong,2 and XIA L...
2006Vol.46No.4pp.749-754DOI: Controlling Quantum State Transfer in Spin Chain with Confined Field CHEN Bing and SONG Zhi Department of Physics, Nankai University, Tianj...

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