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The laser of the non atomic grain the manipulation which is guided

机译:非原子晶粒的激光引导的操作

摘要

(57) Abstract Manner and the device which use the laser light which captures the grain of non atomic size optically in the hollow field of the hollow core optical fiber are disclosed. In addition, over long distance manner and the device which transport the grain which is caught alongside the optical fiber flexiblly are described. Manipulating the grain which consists of the various materials which cover the wide range where this invention includes biochemical system and the aerosol alongside the optical fiber it leads, it makes that it makes the grain come in contact on the various substrates possible. The laser guide device has the laser illuminant which generates laser luminous flux, this laser luminous flux is led to the incident edge of the hollow core optical fiber by the focus adjustment glass lens. In order to pass the optical fiber, resource of the grain which is led supplies the grain of specified number near the incident edge of the optical fiber. Next, it pulls the grain to the hollow core of the optical fiber the focus with the laser luminous flux which adjusted and is packed, grazes inside the optical fiber and it is conveyed alongside the incident path. The optical power which it can make occur with the diffusion, absorption and refraction of the laser light by the grain with the laser captures the grain near the center of the optical fiber, can advance this alongside the optical fiber. The solid-state dielectric, the semiconductor and the solid-state grain and the material of every micron size which includes the composition liquid drop, being captured into laser luminous flux by the net effect due to showing these optical powers, are transported alongside the optical fiber. Specified length of the optical fiber after being conveyed, the grain makes on the necessary substrate come in contact or or is led by the analysis interior, or, follows to the purpose of application of specification and is treated.
机译:(57)摘要公开了一种使用在中空芯光纤的中空场中光学地捕获非原子尺寸的晶粒的激光的方式和装置。另外,描述了以长距离方式灵活地传送被捕获在光纤旁边的谷物的装置。操纵由多种材料组成的谷物,该多种材料涵盖了本发明包括生化系统和气溶胶的各种广泛材料,并使其所导引的光纤旁边,这使得使谷物与各种基材接触成为可能。激光引导装置具有产生激光光束的激光发光体,该激光光束通过调焦玻璃透镜被引导至空心光纤的入射边缘。为了使光纤通过,被引导的晶粒的资源在光纤的入射边缘附近供应指定数量的晶粒。接下来,将经过调节和填充的激光光束将晶粒拉至光纤的中空焦点,将其聚焦,在光纤内部掠过,并沿着入射路径传送。它可以通过晶粒在激光的扩散,吸收和折射中产生的光功率,使激光束在光纤中心附近捕获晶粒,并使其沿着光纤前进。固态电介质,半导体,固态晶粒以及包括组成液滴的每一个微米大小的材料,由于显示出这些光功率而被净效应捕获到激光光束中,并与光一起传输。纤维。传送规定长度的光纤后,使必要的基板上的晶粒接触或被分析室内引导,或遵循规范的目的进行处理。

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