论文标题
随机重置扩散的实验实现
Experimental realization of diffusion with stochastic resetting
论文作者
论文摘要
随机重置在天然和人造系统中普遍存在,导致一系列非平衡现象。随机重置的扩散是研究这些现象的范式模型,但是缺乏一个可以进行实验研究的过程的良好控制平台,这是该领域研究的主要障碍。在这里,我们报告了胶体颗粒扩散和通过全息光学镊子重置的实验实现。我们提供了中央理论结果的第一个实验性佐证,并继续测量在稳态和第一步场景中重置的能量成本。在这两种情况下,我们都表明,由于对现实的重置协议的基本限制,这一成本不能任意缩小。本文开发的方法为未来的重置现象的实验研究打开了大门。
Stochastic resetting is prevalent in natural and man-made systems giving rise to a long series of non-equilibrium phenomena. Diffusion with stochastic resetting serves as a paradigmatic model to study these phenomena, but the lack of a well-controlled platform by which this process can be studied experimentally has been a major impediment to research in the field. Here, we report the experimental realization of colloidal particle diffusion and resetting via holographic optical tweezers. We provide the first experimental corroboration of central theoretical results, and go on to measure the energetic cost of resetting in steady-state and first-passage scenarios. In both cases, we show that this cost cannot be made arbitrarily small due to fundamental constraints on realistic resetting protocols. The methods developed herein open the door to future experimental study of resetting phenomena beyond diffusion.