We study thermal entanglement in a two-superconducting-qubit system in two cases,either identical or distinct.By calculating the concurrence of system,we find that the entangled degree of the system is greatly enhance...We study thermal entanglement in a two-superconducting-qubit system in two cases,either identical or distinct.By calculating the concurrence of system,we find that the entangled degree of the system is greatly enhanced in the case of very low temperature and Josephson energies for the identical superconducting qubits and our result is in a good agreement with the experimental data.展开更多
We investigate the dynamics of quantum discord for a two-qubit system coupled to a spin chain with three-site interaction in the weak-coupling region.For the case of the initial two-qubit pure state,the decay of quant...We investigate the dynamics of quantum discord for a two-qubit system coupled to a spin chain with three-site interaction in the weak-coupling region.For the case of the initial two-qubit pure state,the decay of quantum discord can be delayed in a special interval of the three-site coupling strength.In the absence of the transverse field,with the increase of three-site interaction,quantum discord tends to be stabler.For the case of the initial mixed state,the increase of quantum discord is delayed in the special interval of three-site interaction.In addition,a sudden transition between classical and quantum decoherence is also observed,with the transition time determined by the three-site interaction and degree of anisotropy.展开更多
基金Supported by the National Natural Science Foundation of China under Grant No 11075101the Shanghai Leading Academic Discipline Project(No S30105)the Shanghai Research Foundation under Grant No 07d222020.
文摘We study thermal entanglement in a two-superconducting-qubit system in two cases,either identical or distinct.By calculating the concurrence of system,we find that the entangled degree of the system is greatly enhanced in the case of very low temperature and Josephson energies for the identical superconducting qubits and our result is in a good agreement with the experimental data.
基金the National Natural Science Foundation of China under Grant No 11075101.
文摘We investigate the dynamics of quantum discord for a two-qubit system coupled to a spin chain with three-site interaction in the weak-coupling region.For the case of the initial two-qubit pure state,the decay of quantum discord can be delayed in a special interval of the three-site coupling strength.In the absence of the transverse field,with the increase of three-site interaction,quantum discord tends to be stabler.For the case of the initial mixed state,the increase of quantum discord is delayed in the special interval of three-site interaction.In addition,a sudden transition between classical and quantum decoherence is also observed,with the transition time determined by the three-site interaction and degree of anisotropy.