新材料支持新激光系统

W. Krupke
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引用次数: 0

摘要

只提供摘要形式。从少数商用激光晶体中选择,激光设计师已经生产出一系列令人印象深刻的固体激光器,能够执行广泛的科学,工业和军事应用。激光设计的可能性极大地扩大了在1980年代后期的发展,高效明亮,强大的半导体激光二极管作为固体激光器的泵浦源。尽管如此,有时证明是困难的,如果不是不可能的,设计满足一些应用要求的激光器,当只绘制目前商业上可用的激光晶体,特别是当特别苛刻的尺寸,重量和效率要求强加。因此,仍然需要识别、表征和开发具有显著拓宽未来激光设备和系统设计选择的新型激光晶体。由于将新发现的光学材料从实验室实验过渡到商业准备的成本相当大,因此,相对于现有材料,这些材料必须具有明显不同的特性,并且预期的应用必须得到足够的高度重视。幸运的是,自从40年前激光/spl sim/被发现以来,一系列广泛的建模工具、器件设计经验和材料属性数据库已经发展起来,这些可以用来指导寻找新的激光材料的应用。通过举例,作者详细考虑了导致发现基于II-VI硫族化物晶体中四面体配位,二价3d过渡金属离子的新型室温,二极管泵浦,可调谐中红外激光器的搜索。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New materials enabling new laser systems
Summary form only given. Selecting from but a handful of commercially available laser crystals, laser designers have produced an impressive array of solid state lasers able to perform a wide range of scientific, industrial and military applications. Laser design possibilities were enormously expanded with the development in the late 1980's of efficient bright, and powerful semiconductor laser diodes as pump sources for solid state lasers. Despite this, it sometimes proves difficult, if not impossible, to design lasers meeting some applications requirements, when drawing only on presently commercially-available laser crystals, especially when particularly demanding size, weight, and efficiency requirements are imposed. Thus, there continues to be a need to identify, characterize, and develop novel laser crystals possessing characteristics that significantly broaden design options for future laser devices and systems. Because the cost is rather large to transition a newly discovered optical material from laboratory experiments to commercial readiness, it is necessary that such materials possess significantly distinct and enabling characteristics, relative to available materials, and that the intended application(s) be sufficiently highly valued. Fortunately, since the discovery of the laser /spl sim/40 years ago, an extensive array of modeling tools, device design experiences, and material property data bases have evolved, which can be exploited to guide the search for applications enabling new laser materials. By way of example, the author considers in detail the search leading to the discovery of the new class of room-temperature, diode-pumped, tunable mid-IR lasers based on tetrahedrally-coordinated, divalent 3d-transition metal ions in II-VI chalcogenide crystals.
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