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Nanomachinery: A General Approach to Inducing Directed Motion at the Atomic Level

机译:纳米机械:在原子水平上诱导定向运动的一般方法

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摘要

The motion of bodies in a periodic potential relief with weak attenuation is considered. When subjected to various periodic external effects, the bodies may spontaneously move with a velocity uniquely defined by the frequency of a periodic action nd the space period of the potential. Principles of inducing directed motion which a strictly controllable velocity that are described in this paper can be used for (1) handling individual molecules or molecular clusters on crystal surfaces, (2) creating nanomachines-objects that are free to spontaneously move both in the absence of an external force and in the presence of a force opposite to the direction of motion (and thus capable of transporting other objects), (3) designing actuators providing a strictly controllable velocity of motion, and (4) designing controllable trilogical systems by appropriately profiling tribosurfaces and applying ultrasonic actions. Under periodic external perturbations, but dependence of the mean velocity of a system on the mean applied force (which macroscopically appears as the "friction law" for the system) is shown to contain plateaus of constant velocity not only when the velocity of motion is zero but also when a set of discrete equidistant velocities is present. The problem of creating totally controllable nanomachines can be posed as the problem of controlling the width and position of these plateaus.
机译:考虑了具有弱衰减的周期性电位释放中的物体运动。当受到各种周期性的外部影响时,物体可能会以周期性的频率和电势的空间周期唯一定义的速度自发移动。诱导运动的原理(本文中描述的严格可控的速度)可用于(1)处理晶体表面上的单个分子或分子簇,(2)创建纳米机器对象,在不存在这种情况下可以自由自发移动外力并且存在与运动方向相反的力(因此能够运输其他物体),(3)设计提供严格可控运动速度的执行器,(4)通过适当设计可控三部曲系统对摩擦表面进行轮廓分析并应用超声作用。在周期性的外部扰动下,系统的平均速度与平均施加力的依赖关系(宏观上表现为系统的“摩擦定律”)显示出不仅在运动速度为零时还包含恒定速度的平稳段而且当存在一组离散等距速度时创建完全可控的纳米机器的问题可以被视为控制这些平台的宽度和位置的问题。

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