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为了获得用于制取全息高频光栅的光源,研制了Ar离子激光器的腔外二倍频系统。采用ADP晶体的温度位相匹配法,以半导体致冷器作为冷源,石英晶振用作测温传感器,并将PID实时控制算法用于智能型精密测控温系统中,研制出了控温精度达 0. 05 ℃的恒温装置。成功地实现了氩离子激光器的腔外倍频系统,将波长为514.5 nm的可见光信频得到波长为257. 3 nm的远紫外相干光,用这种光源可制得超高频全息光栅。
In order to obtain the holographic high-frequency grating for the light source, developed an ionized laser ionization frequency doubler system. ADP crystal temperature phase matching method to the semiconductor cooler as a cold source, quartz crystal temperature sensor used and PID real-time control algorithm for intelligent precision temperature measurement and control system, developed a temperature control accuracy of 0 . 05 ℃ thermostat device. Successfully achieved argon ion laser extracavity frequency doubling system, the wavelength of 514.5 nm visible light frequency obtained by the wavelength of 257. 3 nm far-UV coherent light, with this light source can be made UHF holographic grating.