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58W LD side-pump Nd: YAG picosecond laser system at 1KHz with double length of regenerative cavity

机译:58W LD侧泵浦Nd:YAG皮秒激光系统,1KHz,再生腔长度加倍

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An average power of 58 W, pulse width of 40 ps at 1 KHz repetition rate of Nd:YAG picosecond laser is reported. It used an etalon to directly get pulse width of 135 ps from Nd:YVO_4 mode locked laser in 1064 nm, which repetition rate was 88 MHz. When the seed pulses were injected into the double length of regenerative LD side-pump Nd:YAG cavity at 1 KHz repetition rate, the single pulse energy was amplified to 3 mJ, the pulse width was compressed to 99 ps, beam quality of M~∧2 factor was 1.3. The single pulse energy was amplified up to 58 mJ, the pulse width was self compressed to 40 ps, beam quality of M~∧2 factor was approximately 3.5 after single passing three stages of double high gain LD side-pump Nd:YAG module. Beam pointing was about 40 urad. The stability for pulse to pulse RMS was less than 3%. A thin-film polarizer and a quarter-wave plate was inserted into the regenerative amplification cavity to let pulses double travel the same geometric path basis on pulse polarization. Serrated aperture were used in the amplification. That's beneficial to decrease the nonlinear effect for the high power in the crystal. High gain LD side-pump Nd:YAG module could lead the pulse energy amplify more and self compress the pulse width. Double length of regenerative cavity was used to enhance the optical cavity length, it greatly decreased the laser's volume and improved stability of picosecond laser. It's a nice way for high power picosecond laser and the laser system would be more simple and smaller.
机译:据报道,在Nd:YAG皮秒激光的1 KHz重复频率下,平均功率为58 W,脉冲宽度为40 ps。它使用标准具直接从Nd:YVO_4锁模激光器在1064 nm处获得135 ps的脉冲宽度,其重复频率为88 MHz。当以1 KHz重复频率将种子脉冲注入再生LD侧泵Nd:YAG腔的两倍长度时,单脉冲能量放大到3 mJ,脉冲宽度压缩到99 ps,光束质量为M〜 2因子为1.3。单脉冲三级双高增益LD侧泵Nd:YAG模块单次通过后,单脉冲能量被放大到58 mJ,脉冲宽度被自压缩到40 ps,M〜∧2因子的光束质量约为3.5。光束指向大约40拉德。脉冲间RMS的稳定性小于3%。将薄膜偏振器和四分之一波片插入再生放大腔,以使脉冲基于脉冲偏振以相同的几何路径传播两次。锯齿孔用于扩增。这有利于降低晶体中高功率的非线性效应。高增益LD侧泵Nd:YAG模块可导致脉冲能量更多地放大并自压缩脉冲宽度。使用再生腔的两倍长度来增加光学腔的长度,这大大减小了激光的体积,并提高了皮秒激光的稳定性。对于高功率皮秒激光而言,这是一种不错的方法,并且激光系统将更简单,更小。

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