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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。
Which geometry, dopant and doping focus with the acquire medium are most advantageous rely upon quite a few components. The out there pump supply (sort of laser diode or lamp) as well as the envisaged pumping arrangement are essential factors, but the fabric itself also has some impact. One example is, titanium–sapphire lasers must be pumped with higher intensities, for which the shape of a transversely cooled rod, operated with relatively tiny pump and laser beam diameter, is more acceptable than e.
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Not surprisingly, it's very fascinating that a provided crystal high quality is created consistently, Whilst diverse laser patterns might have a special sensitivity to substance parameters.
The maximum possible doping focus can depend strongly over the host content and its fabrication method.
激光晶体的效率在很大程度上依赖于某些属性,这些属性不仅限于其基本组成。这些特性决定了产生的激光光束的质量和随后的应用。
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For quasi-three-amount laser get media or simply 3-level attain media, one particular typically really should Restrict the duration to a value which happens to be also shorter for productive pump absorption, as reabsorption consequences would or else spoil the effectiveness. For side pumping, further things to consider occur into Perform; Aside from economical pump absorption, it is vital to get an acceptable spatial condition of your gain profile.
主体材料中活性离子掺杂物的数量是关键因素。它影响了激光的效率和性能。过低的浓度可能导致低输出,过高的浓度可能导致消光效应,降低晶体的效率。
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There's a wide array of crystalline media, that may be grouped in accordance to big atomic constituents and crystalline structures. Some essential teams of crystals are:
激光晶体(laser more info 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。
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