弛豫光学与激光技术的研究与发展现状

P. Trokhimchuck
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引用次数: 3

摘要

研究表明,对于激光技术来说,有必要创建一个新的物理学分支:弛豫光学(物理光学、量子电子学、物理化学、酉系统中不可逆现象物理学方法的综合)。它被允许解释光和物质相互作用的复杂链式过程。讨论了松弛光学方法在激光诱导过程现象建模中的可能应用,包括激光注入(表面和亚表面过程)、激光诱导光学击穿(体积过程)以及固体中辐射和其他缺陷的激光退火。分析了使用这些方法创造新激光技术的前景,包括创造新型光电器件(异质结构、衍射晶格等),解决冶金、材料科学、绘画、建筑和建筑问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent Research and Development Status of Relaxed Optics and Laser Technology: A Review
It is shown that for laser technologies it was necessary to create a new branch of physics: Relaxed Optics (synthesis of methods of the physical optics, quantum electronics, physical chemistry, physics of irreversible phenomena in unitary system). It is allowed to explain complex chain processes of interaction light and matter. Possible applications of Relaxed Optical methods for the modeling of the laser-induced processes phenomena, including laser implantation (surface and subsurface processes), laser-induced optical breakdown (volume processes) and laser annealing of radiation and other defects in solid, are discussed. Perspectives of using these methods for the creation of new laser technologies, including creation new types of optoelectronic devices (heterostructures, diffraction lattices, etc.), resolution the problems of metallurgy, material science, painting, architecture and a building, are analyzed.
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来源期刊
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