首页> 外文期刊>European journal of physics: A journal of the European Physical Society >Particle Brownian motion due to random classical radiation: superfluid-like behavior in the presence of classical zero-point radiation
【24h】

Particle Brownian motion due to random classical radiation: superfluid-like behavior in the presence of classical zero-point radiation

机译:由于随机经典辐射导致的粒子褐色运动:在经典零点辐射存在下超级流动的行为

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Nonrelativistic classical mechanics allows nofundamentaltransition between low-velocity and high-velocity forms of behavior, nor between low-temperature and high-temperature forms. In contrast, classical electrodynamics, which is a relativistic theory, allows fundamental transitions in velocity. Furthermore, the inclusion within the classical theory of Lorentz-invariant classical zero-point radiation allows classical electrodynamics to distinguish high-temperature and low-temperature forms of behavior. Because electromagnetism is a relativistic theory, it may provide a thermal radiation bath which gives rise to phenomena in Brownian motion which are not included in a model with a thermal bath based upon nonrelativistic particles. Here we explore the Brownian motion of a classical electric-dipole particle in random classicalradiation, making use of the calculations of Einstein and Hopf. The Brownian motion as a function of temperature is analyzed in terms of the mean-square velocity and the diffusion constant for four different classical radiation spectra: the Rayleigh-Jeans spectrum, the Planck spectrum without zero-point radiation, the zero-point radiation spectrum, and the Planck spectrum including zero-point radiation. We illustrate how the inclusion of classical electromagnetic zero-point radiation alters Brownian motion behavior between high-temperature and low-temperature forms. For the Planck spectrum with zero-point radiation, the high-temperature Brownian motion agrees with some aspects found from nonrelativistic mechanics, while the low-temperature behavior includes some aspects analogous to superfluid behavior. At sufficiently low temperatures, the Brownian particle has anincreasingmean-square velocity and more rapid diffusion withdecreasing temperaturedue to the increasing dominance of the classical electromagnetic zero-point radiation.
机译:非筛选经典力学允许低速和高速形式之间的NofundamentalTransition行为,低温和高温形式之间。相反,是一种相对论理论的经典电动动力学允许在速度下产生根本转变。此外,在洛伦兹不变的经典零点辐射的经典理论内夹杂物允许经典电动以区分高温和低温的行为。因为电磁是一种相对论的理论,所以它可以提供热辐射浴,所以热辐射浴,这在褐色运动中产生了现象,其不包括基于非筛选的热浴的模型。在这里,我们在随机分类中探讨了古典电偶极粒子的布朗运动,利用了爱因斯坦和Hopf的计算。根据平均速度和四种不同经典辐射谱的裂缝速度和扩散常数来分析棕色运动:瑞利牛仔裤谱,没有零点辐射的普通辐射频谱,零点辐射谱,以及普朗克频谱,包括零点辐射。我们说明了如何包含经典电磁零点辐射改变高温和低温形式之间的布朗运动行为。对于具有零点辐射的普朗克频谱,高温布朗运动与非素描力学的一些方面同意,而低温行为包括类似于超流行为的一些方面。在足够低的温度下,褐色颗粒具有呼吸器 - 方形速度和更快速的扩散与经典电磁零点辐射的越来越高的优势。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号