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Two Local Observables are Sufficient to Characterize Maximally Entangled States of N Qubits
Local Observables Characterize Maximally Entangled States
2010/11/8
Maximally entangled states (MES) represent a valuable resource in quantum information processing. In $N$-qubit systems the MES are $N$-GHZ states, i.e. the collection of $\ket{GHZ_N}=\frac{1}{\sqrt{2}...
Efficient creation of maximally entangled states by modulation of tunneling rates
entangled states modulation of tunneling rates
2010/4/16
For systems described by the two-site Bose-Hubbard Hamiltonian, we show that a sinusoidal modulation of the tunneling matrix element assists higher-order co-tunneling processes. Using this mechanism, ...
Generation of Maximally Entangled States for Many Two-Level Atoms
in a Thermal Cavity
entanglement GHZ state large-detune
2007/8/15
2007Vol.47No.3pp.557-560DOI:
Generation of Maximally Entangled States for Many Two-Level Atoms
in a Thermal Cavity
JIANG Chun-Lei and FANG Mao-Fa
College of Physics and ...
Generation of Maximally Entangled States of Two Nonidentical
Atoms in Cavity QED
cavity QED maximally entangled states limit of large detuning
2007/8/15
2005Vol.44No.1pp.37-39DOI:
Generation of Maximally Entangled States of Two Nonidentical
Atoms in Cavity QED
LI Yu-Liang,1,2 ZHOU Zheng-Wei,2 PANG Chao-Yang,2 and
GUO Guang-Can2
...