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GSA和ESA双波长泵浦2.3μm波段Tm:YAP激光器 被引量:2
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作者 王飞 黄海涛 +2 位作者 鲍玉朔 李子涵 沈德元 《中国激光》 EI CAS CSCD 北大核心 2022年第1期232-239,共8页
Tm^(3+)离子^(3)F_(4)能级的粒子数捕获效应是影响2.3μm掺铥激光器高效运转的重要因素。报道了基态吸收(GSA,^(3)H_(6)→^(3)H_(4))和激发态吸收(ESA,^(3)F_(4)→^(3)H_(4))双波长泵浦2.3μm波段Tm∶YAP激光器。使用785 nm(GSA)和1470 ... Tm^(3+)离子^(3)F_(4)能级的粒子数捕获效应是影响2.3μm掺铥激光器高效运转的重要因素。报道了基态吸收(GSA,^(3)H_(6)→^(3)H_(4))和激发态吸收(ESA,^(3)F_(4)→^(3)H_(4))双波长泵浦2.3μm波段Tm∶YAP激光器。使用785 nm(GSA)和1470 nm(ESA)双波长泵浦方案能够精准减少^(3)F_(4)能级的粒子数,有效增加^(3)H_(4)能级粒子数布居。在双波长泵浦沿a轴切割的Tm∶YAP晶体中,使用透过率T=1.5%的输出镜,2274 nm和2383 nm双波长激光最大输出功率为2.28 W,相比于单波长泵浦方案提高了65.2%。使用T=2.8%输出镜,2383 nm激光的最大输出功率为942 mW,较单波长泵浦方案提高了84.3%。通过采用特殊镀膜的输出镜,进一步实现了2446 nm激光运转,最大输出功率为1.62 W,较单波长泵浦下的激光输出功率提高了48.6%。实验结果表明,GSA和ESA双波长泵浦方案为实现2.3μm掺铥激光器获得更高的输出功率提供了一种有效技术手段。 展开更多
关键词 激光器 2.3μm掺铥激光器 基态吸收 激发态吸收 双波长泵浦 Tm∶YAP
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Ultrafast Laser Energy Density and Retinal Absorption Cross-Section Determination by Saturable Absorption Measurements
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作者 Alfons Penzkofer Meike Luck +1 位作者 Tilo Mathes Peter Hegemann 《Journal of Analytical Sciences, Methods and Instrumentation》 2014年第1期19-26,共8页
Laser pulse nonlinear transmission measurements through saturable absorbers of known absorption parameters allow the measurement of their energy density. On the other hand, nonlinear transmission measurements of laser... Laser pulse nonlinear transmission measurements through saturable absorbers of known absorption parameters allow the measurement of their energy density. On the other hand, nonlinear transmission measurements of laser pulses of known energy density through absorbing media allow their absorption parameter determination. The peak energy density w0P of second harmonic pulses of a mode-locked titanium sapphire laser at wavelength λP = 400 nm is determined by nonlinear energy transmission measurement TE through the dye ADS084BE (1,4-bis(9-ethyl-3-car-bazovinylene)-2-methoxy-5-(2’-ethyl-hexyloxy)-benzene) in tetrahydrofuran. TE(w0P) calibration curves are calculated for laser pulse peak energy density reading w0P from measured pulse energy transmissions TE. The ground-state absorption cross-section σP and the excited-state absorption cross-section σex at λP, and the number density N0 of the retinal Schiff base isoform RetA in pH 7.4 buffer of the blue-light adapted recombinant rhodopsin fragment of the histidine kinase rhodopsin HKR1 from Chlamydomonas reinhardtii were determined by picosecond titanium sapphire second harmonic laser pulse energy transmission measurement TE through RetA as a function of laser input peak energy density w0P. The complete absorption cross-section spectrum 展开更多
关键词 Laser Pulse Peak Energy DENSITY DETERMINATION ground-state absorption CROSS-SECTION DETERMINATION Excited-state absorption CROSS-SECTION DETERMINATION Saturable absorption ADS084BE Dye Histidine Kinase RHODOPSIN HKR1 RETINAL Schiff Base RetA Cofactor Number DENSITY DETERMINATION
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Cr^(4+):YAG在Nd^(3+)准三能级跃迁波长的吸收截面
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作者 李述涛 张行愚 +4 位作者 王青圃 李平 张少军 王浩 常军 《光电子.激光》 EI CAS CSCD 北大核心 2003年第12期1355-1358,共4页
用泵浦探测法测量了Cr4+:YAG在Nd3+准三能级4F3/2 4I9/2跃迁波长的基态和激发态吸收截面,其结果为:在Nd3+:YAG的准三能级跃迁波长946nm处,基态和激发态吸收截面分别为4.0×10-18cm2和1.1×10-18cm2;在Nd3+:YVO4的准三能级跃迁波... 用泵浦探测法测量了Cr4+:YAG在Nd3+准三能级4F3/2 4I9/2跃迁波长的基态和激发态吸收截面,其结果为:在Nd3+:YAG的准三能级跃迁波长946nm处,基态和激发态吸收截面分别为4.0×10-18cm2和1.1×10-18cm2;在Nd3+:YVO4的准三能级跃迁波长914nm和Nd3+:GdVO4的准三能级跃迁波长912nm处,2个吸收截面分别为3.9×10-18cm2和1.4×10-18cm2。 展开更多
关键词 CR^4+:YAG 基态吸收截面 激发态吸收截面 跃迁波长 泵浦探测法
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