Lithography Techniques for Optical Nanometric Materials and Nanowires

Digambar Jakkan
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Abstract

Lithography is a basic advance to be taken in the creation procedure of coordinated circuits. There is an imperative job of nano and optical gadgets in the present and future applications. Subsequently, this work canter’s around cutting edge and improved lithography systems on those coordinated circuits. In NFO deposition, photograph separation can occur through non full conditions because of the inalienable properties of the optical nanometric field. Nano photolithography utilizing an Optical-Field Non resounding to electronic changeover method makes it conceivable to utilize different sources to store an assortment of nano metric materials. This impossible to miss photochemical response of an optical close to field can be applied to photochemical reaction. Nano manipulation is a significant innovation to create and amass nanostructures, particularly for the uneven structures. In the strategy, the organized plane of substrate was created by laser-intrusion lithography. Nano-wires were controlled on the organized surfaces through nano-opto grippers in material field. The technique utilizes an example to take care of the issue that a solitary nanowire is too little to even think about being gotten and controlled with nano grippers.
光学纳米材料和纳米线的光刻技术
光刻技术是协同电路制作过程中的一个基本进步。纳米和光学器件在当前和未来的应用中都是势在必行的。随后,本工作围绕这些协调电路的前沿和改进光刻系统展开。在NFO沉积中,由于光学纳米场不可剥夺的性质,在非充分条件下可以发生照相分离。纳米光刻技术利用一种光场无回声到电子转换的方法,使得利用不同的光源来存储各种纳米材料成为可能。这种不可能错过的光学近场光化学反应可以应用于光化学反应。纳米操作是纳米结构制造和积累的重要创新,特别是对于不均匀结构。在该策略中,采用激光侵入光刻技术创建衬底的有组织平面。在材料领域,通过纳米光夹持器控制纳米线在组织表面。该技术利用一个例子来解决一个单独的纳米线太小的问题,甚至不能考虑用纳米夹具来获取和控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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