Simpson Stephen H, Hanna Simon
H. H. Wills Physics Laboratory, University of Bristol, Tyndall Avenue, Bristol BS8 1TL, United Kingdom.
Phys Rev E Stat Nonlin Soft Matter Phys. 2010 Sep;82(3 Pt 1):031141. doi: 10.1103/PhysRevE.82.031141. Epub 2010 Sep 30.
It is well known that optical force fields are not conservative. This has important consequences for the thermal motion of optically trapped dielectric spheres. In particular, the spheres do not reach thermodynamic equilibrium. Instead, a steady state is achieved in which the stochastic trajectory contains an underlying deterministic bias toward cyclic motion, and the energy of the sphere deviates from that implied by the equipartition theorem. Such effects are second order and only observed at low trap powers when the sphere is able to explore regions of the trap beyond the linear regime. Analogous effects may be expected for particles of less than spherical symmetry. However, in this case the effects are first order and depend on the linear term in the optical force field. As such they are not suppressed by increases in beam power, although the frequency and amplitude of the cyclic motion will be affected by it. In this paper, we present an analysis of the first-order nonconservative behavior of nonspherical particles in optical traps. The analysis is supported by optical force calculations and brownian dynamics simulations of dielectric microrods held vertically in gaussian optical traps.
众所周知,光力场是非保守的。这对光学捕获的介电球体的热运动有重要影响。特别是,球体不会达到热力学平衡。相反,会达到一种稳态,其中随机轨迹包含对循环运动的潜在确定性偏差,并且球体的能量偏离均分定理所暗示的能量。这些效应是二阶的,并且仅在低捕获功率下球体能够探索陷阱超出线性区域的区域时才会观察到。对于对称性小于球形的粒子,可能会预期有类似的效应。然而,在这种情况下,效应是一阶的,并且取决于光力场中的线性项。因此,它们不会因光束功率的增加而被抑制,尽管循环运动的频率和幅度会受到其影响。在本文中,我们对光学陷阱中非球形粒子的一阶非保守行为进行了分析。该分析得到了高斯光学陷阱中垂直放置的介电微棒的光力计算和布朗动力学模拟的支持。