9 citations · 9 across the 6 of their papers we have counts for
6 papers · 1 filter
Approximate separation of quantum gates and separation experiments of CNOT based on Particle Swarm Optimization algorithm
Kan He, Shusen Liu, Jinchuan Hou
Ying conceived of using two or more small-capacity quantum computers to produce a larger-capacity quantum computing system by quantum parallel programming ([M. S. Ying, Morgan-Kauf…
Separation of gates in quantum parallel programming
Kan He, Shusen Liu, Jinchuan Hou
The number of qubits in current quantum computers is a major restriction on their wider application. To address this issue, Ying conceived of using two or more small-capacity quant…
Quantifying measurement-induced nonbilocal correlation
Ying Zhang, Kan He
In the paper, we devote to defining an available measure to quantify the nonbilocal correlation in the entanglement-swapping experiment. Then we obtain analytical formulas to calcu…
Separation and approximate separation of multipartite quantum gates
Kan He, Shusen Liu, Jinchuan Hou
The number of qubits of current quantum computers is one of the most dominating restrictions for applications. So it is naturally conceived to use two or more small capacity quantu…
Entanglement criterion independent on observables for multipartite Gaussian states based on uncertainty principle
Kan He, Jinchuan Hou
The local uncertainty relation (LUR) criteria for quantum entanglement, which is dependent on chosen observables, is developed recent. In the paper, applying the uncertainty princi…
A geometric characterization of invertible quantum measurement maps
Kan He, Jin-Chuan Hou, Chi-Kwong Li
A geometric characterization is given for invertible quantum measurement maps. Denote by the convex set of all states (i.e., trace-1 positive operators) on Hilber…