论文标题

在谐波电势中活性纳米颗粒的非平衡性能

Non-equilibrium Properties of an Active Nanoparticle in a Harmonic Potential

论文作者

Schmidt, Falko, Šípovà-Jungová, Hana, Käll, Mikael, Würger, Alois, Volpe, Giovanni

论文摘要

由于其定向运动,活性颗粒从热力学平衡中脱离,这在存在狭窄电位的情况下导致了复杂而有趣的行为。然而,在处理活性纳米颗粒时,旋转扩散的压倒性存在阻碍了运动,从而导致其有效温度的升高,但否则掩盖了自我强化的影响。在这里,我们演示了一个实验系统,其中活性纳米颗粒浸入关键溶液中并保持在光学谐波电位中,超出其有效温度的升高超出了远距离平衡行为。在增加激光功率时,我们会观察到从玻尔兹曼分布到非平衡状态的跨界,在该状态下,粒子在梁轴上执行快速轨道旋转。这些发现是通过求解粒子的位置和方向的fokker-planck方程来合理化的。提出的自我刺激机制是由粒子的非球体性和溶质的较低临界点产生的。

Active particles break out of thermodynamic equilibrium thanks to their directed motion, which leads to complex and interesting behaviors in the presence of confining potentials. When dealing with active nanoparticles, however, the overwhelming presence of rotational diffusion hinders directed motion, leading to an increase of their effective temperature, but otherwise masking the effects of self-propulsion. Here, we demonstrate an experimental system where an active nanoparticle immersed in a critical solution and held in an optical harmonic potential features far-from-equilibrium behavior beyond an increase of its effective temperature. When increasing the laser power, we observe a cross-over from a Boltzmann distribution to a non-equilibrium state, where the particle performs fast orbital rotations about the beam axis. These findings are rationalized by solving the Fokker-Planck equation for the particle's position and orientation in terms of a moment expansion. The proposed self-propulsion mechanism results from the particle's non-sphericity and the lower critical point of the solute.

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