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METHOD OF ALIGNING THREE-MIRROR RESONATOR OF GAS LASER

机译:气体激光器三镜谐振器的偏移方法

摘要

FIELD: physics.;SUBSTANCE: first resonator is formed by first semi translucent output mirror and second mirror translucent for wavelength with high gain ((λ=1.15 mcm, and λ=3.39 mcm) and mirror opaque for wavelength with low gain (λ=0.63 mcm), and active element arranged between said mirrors. Second resonator is formed by aforesaid first mirror and third mirror with high reflection and gain. Space between second and third mirrors is visually closed. Proposed method comprises aligning first resonator using the screen with diaphragm and dissipated light source. After generation, alignment is carried out to maximum power on wavelength of λ=0.63 mcm. Third mirror holder is secured on the side of second mirror. At the distance of ≈10 mm from said holder, third mirror is arranged aligning appliance. Third mirror is aligned using radiation coming out from first resonator with wavelength of λ=0.63 mcm unless beams reflected from second and third mirrors are focused at one point. Alignment results in disappearance of λ=0.63 mcm radiation due to occurrence of competing IR-radiation with wavelength of λ=3.39 mcm. Then, screen with diaphragm and additional laser are arranged on outer side of third mirror for visible beam to be directed via diaphragm onto outer surface of third mirror. Beam reflected from the mirror is marked on the screen. Now mirror is removed from aligning appliance and fixed on the holder. Third mirror is again aligned unless reflected visible beam is aligned with said mark. At the laser output, generation on λ=0.63 mcm is replaced by generation on IR-wavelengths. Further alignment of third mirror is carried out unless maximum output power on 1.15 mcm and 3.39 mcm wavelengths is reached.;EFFECT: short and simple alignment.;2 dwg
机译:领域:物理学;实质:第一谐振器由第一半透明输出反射镜和第二反射镜构成,对于高增益((λ= 1.15 mcm,而λ= 3.39 mcm),波长为半透明,对于低增益(λ=所述第一反射镜和第三反射镜具有高反射率和增益,第二谐振器由上述第一反射镜和第三反射镜形成,第二和第三反射镜之间的空间在视觉上是封闭的。产生后,在波长λ= 0.63 mcm上进行最大功率对准,将第三反光镜支架固定在第二反光镜侧面,在距所述支架约≈10mm的距离处,布置第三反光镜除非从第二和第三反射镜反射的光束聚焦在一个点上,否则第三反射镜将使用从第一谐振器发出的波长为λ= 0.63 mcm的辐射进行对准。由于波长为λ= 3.39 mcm的竞争红外辐射的出现,使得λ= 0.63 mcm辐射消失。然后,在第三反射镜的外侧布置具有光阑的屏幕和附加的激光,以将可见光束通过光阑引导到第三反射镜的外表面。从镜子反射的光束在屏幕上标记。现在,将反光镜从对准装置上卸下并固定在支架上。除非反射的可见光束与所述标记对准,否则第三反射镜再次对准。在激光输出处,在λ= 0.63 mcm处的产生被在IR波长处的产生所代替。除非达到1.15 mcm和3.39 mcm波长的最大输出功率,否则将进一步对准第三反射镜。效果:短而简单的对准; 2 dwg

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