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NEW FORMULATION OF STATISTICAL MECHANICS USING THERMAL PURE QUANTUM STATES

机译:热纯量子态的统计力学新配方

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We formulate statistical mechanics based on a pure quantum state, which we call a "thermal pure quantum (TPQ) state". A single TPQ state gives not only equilibrium values of mechanical variables, such as magnetization and correlation functions, but also those of genuine thermodynamic variables and thermodynamic functions, such as entropy and free energy. Among many possible TPQ states, we discuss the canonical TPQ state, the TPQ state whose temperature is specified. In the TPQ formulation of statistical mechanics, thermal fluctuations are completely included in quantum-mechanical fluctuations. As a consequence, TPQ states have much larger quantum entanglement than the equilibrium density operators of the ensemble formulation. We also show that the TPQ formulation is very useful in practical computations, by applying the formulation to a frustrated two-dimensional quantum spin system.
机译:我们根据纯量子状态制定统计力学,我们称之为“热纯量子(TPQ)状态”。单个TPQ状态不仅提供了机械变量的平衡值,例如磁化和相关函数,还提供了真正热力学变量和热力学功能的均衡值,例如熵和自由能。在许多可能的TPQ状态中,我们讨论规范TPQ状态,指定温度的TPQ状态。在TPQ配方的统计力学中,热波动完全包括在量子机械波动中。结果,TPQ状态具有比集合配方的平衡密度算子更大的量子缠结。我们还表明,通过将配方应用于令人沮丧的二维量子旋转系统,TPQ配方在实际计算中非常有用。

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