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Entropy evolvement properties in a system of Schrodinger cat state light field interacting with two entangled atoms 被引量:3
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作者 刘堂昆 《Chinese Physics B》 SCIE EI CAS CSCD 2006年第3期542-546,共5页
The field entropy can be regarded as a measurement of the degree of entanglement between the light field and the atoms of a system which is composed of two-level atoms initially in an entangled state interacting with ... The field entropy can be regarded as a measurement of the degree of entanglement between the light field and the atoms of a system which is composed of two-level atoms initially in an entangled state interacting with the Schroedinger cat state. The influences of the strength of light field and the phase angle between the two coherent states on the field entropy are discussed by using numerical calculations. The result shows that when the strength of light field is large enough the field entropy is not zero and the degrees of entanglement between the atoms and the three different states of the light fields are equal. When the strength of the light field is small, the degree of entanglement is maximum in a system of the two entangled atoms interacting with an odd coherent state; it is intermediate for a system of the two entangled atoms interacting with the Yurke-Stoler coherent state, and it is minimum in a system of the two entangled atoms interacting with an even coherent state. 展开更多
关键词 field entropy entangled state Schroedinger cat state
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Properties of field quantum entropy evolution in the Jaynes-Cummings model with initial squeezed coherent states field
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作者 刘王云 安毓英 杨志勇 《Chinese Physics B》 SCIE EI CAS CSCD 2007年第12期3704-3709,共6页
The properties of the field quantum entropy evolution in a system of a single-mode squeezed coherent state field interacting with a two-level atom is studied by utilizing the complete quantum theory, and we focus our ... The properties of the field quantum entropy evolution in a system of a single-mode squeezed coherent state field interacting with a two-level atom is studied by utilizing the complete quantum theory, and we focus our attention on the discussion of the influences of field squeezing parameter γ, atomic distribution angle θ and coupling strength g between the field and the atom on the properties of the evolution of field quantum entropy. The results obtained from numerical calculation indicate that the amplitude of oscillation of field quantum entropy evolution decreases with the increasing of squeezing parameter γ, and that both atomic distribution angle θ and coupling strength g between the field and the atom can influence the periodicity of field quantum entropy evolution. 展开更多
关键词 quantum field entropy single-mode squeezed coherent states Jaynes-Cummings model
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Entropy of field interacting with two two-qubit atoms
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作者 刘堂昆 陶宇 +1 位作者 单传家 刘继兵 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第9期180-183,共4页
We use quantum field entropy to measure the degree of entanglement for a coherent state light field interacting with two atoms that are initially in an arbitrary two-qubit state. The influence of different mean photon... We use quantum field entropy to measure the degree of entanglement for a coherent state light field interacting with two atoms that are initially in an arbitrary two-qubit state. The influence of different mean photon number of the coherent field on the entropy of the field is discussed in detail when the two atoms are initially in one superposition state of the Bell states. The results show that the mean photon number of the light field can regulate the quantum entanglement between the atoms and light field. 展开更多
关键词 quantum field entropy coherent state light field quantum entanglement
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Low field induced giant anisotropic magnetocaloric effect in DyFeO_3 single crystal 被引量:3
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作者 柯亚娇 张向群 +2 位作者 葛恒 马跃 成昭华 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第3期5-9,共5页
We have investigated the anisotropic magnetocaloric effect and the rotating field magnetic entropy in Dy FeO3 single crystal. A giant rotating field entropy change of -ΔSM^R = 16.62 J/kg·K was achieved from b ax... We have investigated the anisotropic magnetocaloric effect and the rotating field magnetic entropy in Dy FeO3 single crystal. A giant rotating field entropy change of -ΔSM^R = 16.62 J/kg·K was achieved from b axis to c axis in bc plane at 5 K for a low field change of 20 k Oe. The large anisotropic magnetic entropy change is mainly accounted for the 4 f electron of rare-earth Dy^3+ ion. The large value of rotating field entropy change, together with large refrigeration capacity and negligible hysteresis, suggests that the multiferroic ferrite Dy FeO3 singlecrystal could be a potential material for anisotropic magnetic refrigeration at low field, which can be realized in the practical application around liquid helium temperature region. 展开更多
关键词 magnetocaloric effect rotating field entropy change magnetocrystalline anisotropy DyFeO3 single crystal
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Entanglement properties in a system of a pairwise entangled state
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作者 刘堂昆 程维文 +2 位作者 单传家 高云峰 王继锁 《Chinese Physics B》 SCIE EI CAS CSCD 2007年第12期3697-3703,共7页
Based on the quantum information theory, this paper has investigated the entanglement properties of a system which is composed of the two entangled two-level atoms interacting with the two-mode entangled coherent fiel... Based on the quantum information theory, this paper has investigated the entanglement properties of a system which is composed of the two entangled two-level atoms interacting with the two-mode entangled coherent fields. The influences of the strength of light field and the two parameters of entanglement between the two-mode fields on the field entropy and on the negative eigenvalues of partial transposition of density matrix are discussed by using numerical calculations. The result shows that the entanglement properties in a system of a pairwise entangled states can be controlled by appropriately choosing the two parameters of entanglement between the two-mode entangled coherent fields and the strength of two light fields respectively. 展开更多
关键词 field entropy negative eigenvalues two entangled atoms two-mode entangled coherent fields
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