The Basic Principles Of Laser Crystal
The Basic Principles Of Laser Crystal
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激光晶体是固态激光器的核心。它们是光放大发生的媒介,产生激光束。在这篇全面指南中,我们深入探讨激光晶体的世界。
激光晶体(laser crystal),可将外界提供的能量通过光学谐振腔转化为在空间和时间上相干的具有高度平行性和单色性激光的晶体材料。是晶体激光器的工作物质。
The host medium influences strongly the wavelength, bandwidth and transition cross-sections of pump and laser transitions and likewise the upper-condition life span.
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Obviously, it is extremely desirable that a given crystal high-quality is manufactured continually, While unique laser types can have another sensitivity to substance parameters.
The utmost achievable doping focus can depend strongly over the host content and its fabrication method.
The host crystal is a lot more than just a method to repair the laser-active ions at sure positions in Area. A number of Attributes with the host content are important:
激光晶体的核心由固态晶体材料组成,通常掺杂了某些能够通过受激发射产生光放大的离子。这些离子的性质对激光晶体的性能起决定作用。
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In 2017, we created the whole world’s premier Ti∶sapphire crystal (Φ235 mm), which supported The ten PW laser output of Shanghai Superintense Ultrafast Laser Facility. The development of Yb and Tm doped GdScO3 laser crystals with really wide emission spectra drives the development of laser diode pumped ultrafast stable-point out lasers. With the increase in pulse Vitality, peak ability, and repetition price of strong-condition lasers, laser crystals will produce to larger sizes, larger crystal good quality, and controllable vital effectiveness.
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人造红宝石激光晶体是首次实现激光输出的材料。可用焰熔法、提拉法或助熔剂法生产单晶。用提拉法容易获得大尺寸优质晶体。