高平均功率、高脉冲重复频率二极管泵浦紫外固体激光器系统

R. Koch, T. Schroder, U. Stamm, W. Zschocke, D. Basting
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引用次数: 3

摘要

我们已经证明了二极管柱泵浦Nd:YAG激光器的脉冲重复频率(PRF)工作范围向更高的PRF方向的显著扩展。该激光器是一种具有稳定谐振腔的电光调q Nd:YAG激光器,由占空比约为20%的脉冲激光二极管侧泵浦。之前我们已经证明,PRF可以在1hz到1khz的巨大范围内连续调整。在1khz,通常产生10w的输出功率,对应于10mj的单脉冲能量[1]。基波中的脉冲持续时间约为12纳秒。结合接近衍射限制的光束质量(M2 < 1.1),这种高强度允许高效率地产生外部谐波。5HG在1khz时的典型值为532 nm时的平均功率为6.5 W, 355 nm时为4.5 W, 266 nm时为2.8 W, 213 nm时为1 W[2]。
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High Average Power, High Pulse Repetition Frequency Diode Pumped UV Solid-State Laser System
We have demonstrated significant extension of the pulse repetition frequency (PRF) operation regime of a diode-bar-pumped Nd:YAG laser towards higher PRF. The laser is an electro-optic Q-switched Nd:YAG laser with stable resonator It is side-pumped by pulsed laser diodes with a duty cycle in the order of 20 %. Earlier we have demonstrated that the PRF can be continuously adjusted over an enormous range from 1 Hz to 1 kHz At 1 kHz, typically an output power of 10 W is generated, corresponding to a single pulse energy of 10 mJ [1]. The pulse duration in the fundamental wave is about 12 ns. Combined with a near-diffraction limited beam quality (M2 < 1.1), this high intensity allows external harmonic generation with high efficiency. Typical values at 1 kHz are an average power of 6.5 W at 532 nm, 4.5 W at 355 nm, 2.8 W at 266 nm, and 1 W at 213 nm in the 5HG [2].
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