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A picosecond widely tunable deep-ultraviolet laser for angle-resolved photoemission spectroscopy
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We develop a picosecond widely tunable laser in a deep-ultraviolet region from 175 nm to 210 nm,generated by two stages of frequency doubling of a 80-MHz mode-locked picosecond Ti:sapphire laser.A β-BaB2O4 walk-off compensation configuration and a KBe2BO3F2 prism-coupled device are adopted for the generation of second harmonic and fourth harmonics,respectively.The highest power is 3.72 mW at 193 nm,and the fluctuation at 2.85 mW in 130 min is less than ±2%. 相似文献
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We demonstrate a new management of multi-stage optical parametric generator(OPG)and amplifier(OPA)to obtain high-energy picosecond sources with high beam quality.The setup of multi-stage OPG-OPA requires mode-matching between the pump beam and the stable mode of the OPG-OPA.In a proof-of-principle experiment,the single-pass multi-stage OPG-OPA consists of three walk-off compensated KTP crystal pairs and two lenses,pumped by an 86 ps,1064 nm 10 kHz picosecond laser.The signal light at~1.77μm has an average output power of 502 mW with record energy up to 50.2μJ.The beam quality factor of the signal light can be improved toM2x ×M2yafter filtering out about 40%signal power.To the best of our knowledge,it is the first picosecond single-pass multi-stage OPG-OPA pumped at kHz regime. 相似文献
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最近,中国科学院物理研究所、中国科学院上海硅酸盐研究所和中国科学院理化技术研究所合作,获得了较高质量的Nd∶YAG多晶陶瓷并实现了热容运转10.0W的激光输出。实验中使用的Nd∶YAG多晶陶瓷Nd3 掺杂原子数分数为1%,尺寸为3.5mm×3.5mm×12mm。图1给出了Nd∶YAG陶瓷在700~1200nm间的透射率曲线,在1064nm处的透射率为87.0%。用α代表损耗系数,则exp(-αl)=87.0%,其中l表示陶瓷的长度。因此损耗系数α=0.116cm-1。开展了Nd∶YAG陶瓷的热容运转激光性能研究,即在激光工作过程中激光介质处于绝热状态。实验装置如图2所示,激光陶瓷由两… 相似文献
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本文对不同冷却温度下的Yb∶YAG晶体板条激光模块高功率运转时的温度场、应力场及对应的热畸变进行了仿真分析研究。结果显示,随着冷却温度从300K降低至77K,板条的温度梯度热应力与应变都明显降低。当冷却温度为77 K时,最大主应力为414 MPa,仅为常温时的156,最大主应变为382×10-5,仅为常温时的6。为了分析Yb∶YAG晶体板条激光模块不同冷却温度下输出激光的光束质量,以确定其最佳运转温度,我们采用光线追迹的方法,对单程通过板条的1030nm探测光进行仿真。可以看到,当冷却温度为77 K时,远场光斑能量更为集中,且探测光光程差的PV值为07941μm,仅为300K时的596。模拟结果表明低温运转有利于Yb∶YAG晶体板条激光模块产生高功率高光束质量激光输出,这为高功率高光束质量Yb∶YAG晶体板条激光的设计工作奠定了基础。 相似文献
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High Beam Quality Green Generation with Output 140W Based on a Thermally-Near-Unstable Flat-Flat Resonator 总被引:1,自引:0,他引:1
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By using a diode-side-pumped Q-switched Nd:YAG rod laser based on a thermally-near-unstable fiat-fiat resonator, an intracavity-frequency-doubled green beam generation is investigated. Output power 140 W is obtained at a repetition rate of 10kHz and a pulse width of 110ns. The green beam quality factors Mx^2 and My^2, which are measured by a laser beam analyser, are 10.65 and 10.85, respectively, at output power of 124W. 相似文献
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光学元件中的杂质和缺陷会引起其激光损伤阈值的大幅降低,现阶段这一问题已成为激光装置向高功率、高能量方向发展的“瓶颈”,亟待解决。在对光学元件激光损伤的研究中发现,用低于光学元件损伤阈值的激光对元件表面进行预处理,可以有效提高光学元件的抗激光损伤能力。对激光预处理技术的提出背景、定性作用机理、定量理论模型及国内外技术应用现状进行了概述。并且介绍了一种可在薄膜制备过程中进行原位实时激光预处理的新型薄膜制备技术。最后指出,激光预处理技术作为一种无污染,可有效改善光学薄膜、光学玻璃、光学晶体元件损伤阈值的最有效方法之一,其作用机理、实用化、仪器化还有待进一步发展。 相似文献