首页> 外文期刊>Nuclear Physics, A: Journal Devoted to the Experimental Study of the Fundamental Constituents of Matter and Their Actions >THE PERTURBED STATIC PATH APPROXIMATION AT FINITE TEMPERATURE - OBSERVABLES AND STRENGTH FUNCTIONS
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THE PERTURBED STATIC PATH APPROXIMATION AT FINITE TEMPERATURE - OBSERVABLES AND STRENGTH FUNCTIONS

机译:有限温度下的摄动静态路径逼近-可观测和强度函数

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摘要

We present an approximation scheme for calculating observables and strength functions of finite fermionic systems at finite temperature such as hot nuclei. The approach is formulated within the framework of the Hubbard-Stratonovich transformation and goes beyond the static path approximation and the RPA by taking into account small amplitude time-dependent fluctuations around each static value of the auxiliary fields. We show that this perturbed static path approach can be used systematically to obtain good approximations for observable expectation values and for low moments of the strength function. The approximation for the strength function itself, extracted by an analytic continuation from the imaginary-time response function, is not always reliable, and we discuss the origin of the discrepancies and possible improvements. Our results are tested in a solvable many-body model. (C) 1997 Elsevier Science B.V. [References: 28]
机译:我们提出了一种近似方案,用于计算在有限温度下(例如热核)有限费米离子系统的可观测值和强度函数。该方法是在Hubbard-Stratonovich变换的框架内制定的,它通过考虑围绕辅助场的每个静态值的小幅度随时间变化的波动,超越了静态路径逼近和RPA。我们表明,这种扰动的静态路径方法可以系统地用于获得可观察的期望值和强度函数的低阶矩的良好近似值。强度函数本身的近似值(通过解析连续性从虚时响应函数中提取)并不总是可靠的,我们将讨论差异的根源和可能的改进。我们的结果在可解多体模型中进行了测试。 (C)1997 Elsevier Science B.V. [参考:28]

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