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Iterative algorithm versus analytic solutions of the parametrically driven dissipative quantum harmonic oscillator

机译:参数驱动的耗散型量子谐波振荡器的迭代算法与解析解

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We consider the Brownian motion of a quantum-mechanical particle in a one-dimensional parabolic potential with periodically modulated curvature under the influence of a thermal heat bath. Analytic expressions for the time-dependent position and momentum variances are compared with results of an iterative algorithm, the so-called quasiadiabatic propagator path-integral algorithm. We obtain good agreement over an extended range of parameters for this spatially continuous quantum system. These findings indicate the reliability of the algorithm also in cases for which analytic results may not be available a priori. [References: 31]
机译:我们考虑在热浴作用下,量子力学粒子在一维抛物线势中的布朗运动,该曲率具有周期性调制的曲率。将与时间相关的位置和动量方差的解析表达式与迭代算法(即所谓的拟绝热传播路径积分算法)的结果进行比较。我们在此空间连续量子系统的扩展参数范围内获得了良好的一致性。这些发现还表明,在分析结果可能无法事先获得的情况下,该算法也具有可靠性。 [参考:31]

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