欢迎您!
东篱公司
退出
申报数据库
申报指南
立项数据库
成果数据库
期刊论文
会议论文
著 作
专 利
项目获奖数据库
位置:
成果数据库
>
期刊
> 期刊详情页
Irreducible multi-qutrit correlations in Greenberger-Horne-Zeilinger type states
期刊名称:Physical Review A (atomic, Molecular and Optical P
时间:2011.12
页码:2328-
相关项目:量子非定域性和GHZ定理的研究
作者:
Zhang Fu-Lin|Chen Jing-Ling|
同期刊论文项目
量子非定域性和GHZ定理的研究
期刊论文 32
同项目期刊论文
Quantum contextuality in a one-dimensional quantum harmonic oscillator
Quantum contextuality for a relativistic spin-1/2 particle
Most robust and fragile two-qubit entangled states under depolarizing channels
Compact Bell inequalities for multipartite experiments
All-Versus-Nothing Proof of Einstein-Podolsky-Rosen Steering
Detecting einstein-podolsky-rosen steering for continuous variable wavefunctions
Quantum contextuality of a qutrit state
Dimension-independent bounds for Hardy's experiment
Demonstrating quantum contextuality of indistinguishable particles by a single family of noncontextu
Testing Leggett's Inequality Using Aharonov-Casher Effect
Sequential state discrimination and requirement of quantum dissonance
Test of Einstein-Podolsky-Rosen Steering Based on the All-Versus-Nothing Proof
Assisted optimal state discrimination without entanglement
Constructing physical systems with dynamical symmetry
Experimental Demonstration of the Einstein-Podolsky-Rosen Steering Game Based on the All-Versus-Noth
Linear response of tripartite entanglement to infinitesimal noise
Hardy’s paradox for high-dimensional systems
State-independent contextuality sets for a qutrit
Optimal GHZ Paradox for Three Qubits
Beyond Gisin's Theorem and its Applications: Violation of Local Realism by Two-Party Einstei
Zitterbewegung in Bogoliubov's System
Quantum nonlocality enhanced by homogenization
Higgs Algebraic Symmetry of Screened System in a Spherical Geometry
Quantum nonlocality of massive qubits in a moving frame
Requirement of Dissonance in Assisted Optimal State Discrimination
Solving the Generalized Higgs Model from the Generalized CRS Model
Demonstrating an additional law of relativistic velocities based on squeezed light