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Construction of multiple-beam optical traps with nanometer-resolution position sensing

机译:具有纳米分辨率位置感测的多光束光阱的构建

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We describe the design and construction of two different types of multiple-beam optical tweezers, each equipped with nanometer-resolution position detectors. Multiple optical traps can be created either by splitting a laser beam in two parts, based on its polarization, or time-sharing a single beam among several different locations. The advantages and disadvantages of optical tweezers based on either scheme are discussed, along with details of specific implementations. Various ways to detect microscopic movements of an optically trapped object are presented and compared, including designs that are relatively insensitive to absolute location of a trapped particle within the field of view. Two of many possible applications for such instruments are illustrated: the detection of molecular steps by kinesin motor molecules, and determinations of the stiffness of single microtubules.
机译:我们描述了两种不同类型的多光束光学镊子的设计和构造,每种镊子都配备了纳米分辨率的位置检测器。可以通过根据偏振将激光束分为两部分,或在几个不同位置之间分时共享一个光束来创建多个光阱。讨论了基于这两种方案的光镊的优缺点以及具体实现的细节。呈现并比较了检测光学捕获的物体的微观运动的各种方式,包括对捕获的粒子在视场内的绝对位置相对不敏感的设计。说明了此类仪器的许多可能应用中的两个:通过驱动蛋白运动分子检测分子步长,以及确定单个微管的刚度。

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