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Thermal lens in laser-diode-pumped self-frequency-doubled Nd,Lu:YAl/sub 3/(BO/sub 3/)/sub 4/ laser with and without laser oscillations

机译:激光二极管泵浦自倍频Nd,Lu:YAl / sub 3 /(BO / sub 3 /)/ sub 4 /激光器中的热透镜,带有和不带有激光振荡

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A new self-frequency-doubling Nd,Lu:YAl/sub 3/(BO/sub 3/)/sub 4/ (NLYAB) crystal, in which a part of the Y/sup 3+/ ion is replaced by the Lu/sup 3+/ ion according to the volume compensation theory for improving the crystal quality, has nearly the same physical properties and better crystal quality compared with NYAB. The laser-diode (LD) pumped NLYAB laser has the possibility of providing a compact and efficient coherent light source in the visible region. In general, thermal lensing reduces laser efficiency and degrades beam quality. Qualitative estimation of the thermal lens in the crystal is very important for optimizing laser performance. Recently, several researchers have suggested that at high excitations typically found under non-lasing conditions, non-radiative relaxation increases the heat load and, hence, induces strong thermal lensing. In this paper, we present a quantitative comparison between the thermal lens under lasing and non-lasing conditions in a LD pumped NLYAB laser using the lateral-shearing interferometric technique.
机译:一种新的自倍频Nd,Lu:YAl / sub 3 /(BO / sub 3 /)/ sub 4 /(NLYAB)晶体,其中一部分Y / sup 3 + /离子被Lu取代/ sup 3 + /离子根据体积补偿理论可改善晶体质量,与NYAB相比具有几乎相同的物理特性和更好的晶体质量。激光二极管(LD)泵浦NLYAB激光器具有在可见光区域提供紧凑高效的相干光源的可能性。通常,热透镜会降低激光效率并降低光束质量。对晶体中热透镜的定性估计对于优化激光性能非常重要。最近,一些研究人员提出,在通常在非激光条件下发现的高激发下,非辐射弛豫会增加热负荷,因此会引起强烈的热透镜效应。在本文中,我们使用横向剪切干涉技术在LD泵浦NLYAB激光器中激光和非激光条件下的热透镜之间进行了定量比较。

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