Sinha Sudarson Sekhar, Mondal Debasish, Bag Bidhan Chandra, Ray Deb Shankar
Indian Association for the Cultivation of Science, Jadavpur, Kolkata 700032, India.
Phys Rev E Stat Nonlin Soft Matter Phys. 2010 Nov;82(5 Pt 1):051125. doi: 10.1103/PhysRevE.82.051125. Epub 2010 Nov 17.
We propose a scheme for quantum brownian motion of a particle in a fermionic bath. Based on the spin coherent-state representation of the noise operators and a canonical thermal distribution of the associated c numbers, we derive a quantum analog of generalized Langevin equation for quantum-mechanical mean position of the particle subjected to an external force field. The approach allows us to map the quantum problem on a classical setting. The quantum dispersion around the mean can be estimated order by order by a set of quantum correction equations up to a desired degree of accuracy for a given nonlinear potential. We derive a quantum diffusion equation for free particle and show that quantization, in general, enhances the mean-square displacement. Increase in temperature leads to suppression of mean-square displacement. The method is based on canonical quantization procedure and may be used for understanding diffusive transport and thermally activated processes in a fermionic bath.
我们提出了一种关于粒子在费米子热库中的量子布朗运动的方案。基于噪声算符的自旋相干态表示以及相关经典数的正则热分布,我们推导了在外部力场作用下粒子的量子力学平均位置的广义朗之万方程的量子类似物。该方法使我们能够将量子问题映射到经典情形。对于给定的非线性势,围绕平均值的量子涨落可以通过一组量子修正方程逐级估计到所需的精度。我们推导了自由粒子的量子扩散方程,并表明一般来说,量子化会增强均方位移。温度升高会导致均方位移受到抑制。该方法基于正则量子化过程,可用于理解费米子热库中的扩散输运和热激活过程。