计算机光学元件激光合成多孔和氧化物纳米结构

V. A. Danilov
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引用次数: 0

摘要

激光辐射产生的效果主要由光学系统在材料的加工表面上产生给定能量分布的能力决定。现有和发展中的光学系统的多样性表明了解决这一问题的重要性。使用计算机光学元件在焦平面中重新分布激光强度也是重要的。这在很大程度上决定了加工材料中结构形成过程的过程。考虑了激光辐照合成多孔和氧化物纳米结构的特点。当使用调频激光束时,激光辐射的热效应和脉冲周期性激光诱导振动之间的协同效应导致扩散系数显著增加。这是由待处理材料的非平稳应力-应变状态引起的。
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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Synthesis of Porous and Oxide Nanostructures by the Method of Laser Irradiation Using Computer Optics Elements

Laser radiation produces an effect that is mainly determined by the ability of the optical system to create a given energy distribution over the worked surface of the material. The variety of existing and developing optical systems indicates the importance of solving this problem. The use of computer optics elements for redistribution of laser intensity in the focal plane is also important. This largely determines the course of structure formation processes in processed materials. The features of synthesis of porous and oxide nanostructures by laser irradiation are considered. When frequency-modulated laser beam is used, the synergistic effect between the thermal effects of laser irradiation and the pulse-periodic laser-induced vibrations leads to a significant increase in the diffusion coefficient. This is caused by the non-stationary stress-strain state of the material to be treated.

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来源期刊
CiteScore
1.50
自引率
11.10%
发文量
25
期刊介绍: The journal covers a wide range of issues in information optics such as optical memory, mechanisms for optical data recording and processing, photosensitive materials, optical, optoelectronic and holographic nanostructures, and many other related topics. Papers on memory systems using holographic and biological structures and concepts of brain operation are also included. The journal pays particular attention to research in the field of neural net systems that may lead to a new generation of computional technologies by endowing them with intelligence.
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