首页> 外文会议>Conference on Advanced Laser Technologies; Sep 15-20, 2002; Adelboden, Switzerland >The Lindblad dynamics of a Fermi system in a particle dissipative environment
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The Lindblad dynamics of a Fermi system in a particle dissipative environment

机译:耗散颗粒环境中费米系统的Lindblad动力学

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An essential problem of the quantum information systems is the controllability and observability of the quantum states, generally described by Lindblad's master equation with phenomenological coefficients. However, in its general form, this equation describes a decay of the mean-values, but not necessarily the expected decaying transitions. We propose a quantum master equation with microscopic coefficients where these transitions are correctly described, and investigate the properties of the dissipative coefficients. Being of Lindblad's form, this equation preserves the quantum-mechanical properties of the density matrix during the whole evolution of the system and is in accordance with the entropy principle. On this basis, generalized Bloch-Feynman equations with microscopic coefficients for N-level systems are obtained.
机译:量子信息系统的一个基本问题是量子态的可控性和可观测性,通常由Lindblad的具有现象学系数的主方程描述。但是,一般而言,该方程式描述了平均值的衰减,但不一定是预期的衰减过渡。我们提出了一个具有微观系数的量子主方程,其中正确描述了这些跃迁,并研究了耗散系数的性质。该方程式为Lindblad形式,在系统的整个演化过程中保留了密度矩阵的量子力学性质,并且符合熵原理。在此基础上,获得了N级系统具有微观系数的广义Bloch-Feynman方程。

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