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Numerical and Experimental Study of Optoelectronic Trapping on Iron-Doped Lithium Niobate Substrate

机译:铁掺杂铌酸锂衬底上光电子俘获的数值和实验研究

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摘要

Optoelectronic tweezers (OET) are a promising technique for the realization of reconfigurable systems suitable to trap and manipulate microparticles. In particular, dielectrophoretic (DEP) forces produced by OET represent a valid alternative to micro-fabricated metal electrodes, as strong and spatially reconfigurable electrical fields can be induced in a photoconductive layer by means of light-driven phenomena. In this paper we report, and compare with the experimental data, the results obtained by analyzing the spatial configurations of the DEP-forces produced by a 532 nm laser beam, with Gaussian intensity distribution, impinging on a Fe-doped Lithium Niobate substrate. Furthermore, we also present a promising preliminary result for water-droplets trapping, which could open the way to the application of this technique to biological samples manipulation.
机译:光电镊子(OET)是一种有前途的技术,可用于实现可捕获和操纵微粒的可重构系统。特别地,由OET产生的介电泳(DEP)力代表了微型金属电极的有效替代方案,因为可以通过光驱动现象在光导层中感应出强大且空间可重构的电场。在本文中,我们报告并与实验数据进行了比较,结果是通过分析532 nm激光束(具有高斯强度分布)撞击到掺Fe铌酸锂衬底上的DEP力的空间构型而获得的。此外,我们还为水滴捕集提供了有希望的初步结果,这可能为将该技术应用于生物样品处理开辟道路。

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