紧凑型被动调q Tm:KY(WO4)2激光器

IF 0.2 Q4 INSTRUMENTS & INSTRUMENTATION Devices and Methods of Measurements Pub Date : 2022-04-04 DOI:10.21122/2220-9506-2022-13-1-27-31
V. Kisel
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引用次数: 0

摘要

发射光谱范围接近2 μm的二极管泵浦铥激光器在不同领域的应用具有吸引力:外科手术,测距和环境大气监测。本文介绍了以多晶Cr:ZnSe作为2 μm光谱区最有效的饱和吸收剂的Tm:KYW激光器性能的最新研究结果。在波长1940 nm处,获得了≈0.65 W的最大连续波输出功率,斜率效率为55%。在2.2 W的入射功率下,获得了能量为26 μJ、重复频率为6 kHz的激光脉冲,在1910 nm处平均输出功率为156 mW,初始透射率为95%。利用可饱和吸收体,实现了能量为40 μJ、持续时间短至10 ns的90%激光脉冲的低初始透射率。在入射泵浦功率为2.2 W时,最大脉冲重复率为2.8 kHz。结果表明,Tm:KYW晶体是一种很有前途的主源介质,可用于在近2 μm光谱范围内发射的紧凑型被动调q激光器,用于外科手术和测距。此外,所描述的激光器计划用作激光诱导损伤阈值测量装置的激光源,用于研究2 μm波长附近的可饱和吸收体和非线性晶体的损伤阈值。
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Compact Passively Q-Switched Tm:KY(WO4)2 Laser
Diode-pumped thulium lasers emitting in the spectral range near 2 μm are attractive for applications in different areas: surgery, rangefinding, and environmental atmosphere monitoring. In this article the latest results of Tm:KYW laser performance with a polycrystalline Cr:ZnSe as the most available saturable absorber for 2 μm spectral region are presented.A maximum continuous-wave output power of ≈ 0.65 W with a slope efficiency of 55 % was obtained at the wavelength of 1940 nm. Laser pulses with energy of 26 μJ and repetiotion rate of 6 kHz coresponding to 156 mW of average output power at 1910 nm were obtained at 2.2 W of incident puwp power for the Cr:ZnSe saturable absorber with initial transmission of 95 %. By using of saturable absorber with lower initial transmission of 90 % laser pulses with energy of 40 μJ and duration as short as 10 ns were realized. The maximal pulse repetition rate was 2.8 kHz at incident pump power of 2.2 W.Based on the obtained results, it can be concluded that Tm:KYW crystals are promising active media for the compact passively Q-switched lasers emitting in the spectral range near 2 μm for the usage in surgery and rangefinding. Also, described laser is planned to be used as a laser source in laser-induced damage threshold measurements setup for investigation of damage threshold of saturable absorbers as well as nonlinear crystals at the wavelength near 2 μm.
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Devices and Methods of Measurements
Devices and Methods of Measurements INSTRUMENTS & INSTRUMENTATION-
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25.00%
发文量
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审稿时长
8 weeks
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