首页> 外文期刊>IEEE Journal of Quantum Electronics >Generation of tunable femtosecond pulses in the 1.21-1.27 /spl mu/m and 605-635 nm wavelength region by using a regeneratively initiated self-mode-locked Cr:forsterite laser
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Generation of tunable femtosecond pulses in the 1.21-1.27 /spl mu/m and 605-635 nm wavelength region by using a regeneratively initiated self-mode-locked Cr:forsterite laser

机译:通过使用再生启动的自锁模Cr:镁橄榄石激光器在1.21-1.27 / spl mu / m和605-635 nm波长范围内产生可调飞秒脉冲

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摘要

A detailed description of the design and operational characteristics of a regeneratively initiated, self-mode-locked Cr:forsterite laser pumped by a continuous-wave Nd:YAG laser is given. Without compensating for the intracavity positive group velocity dispersion, regenerative acoustooptic modulation produced pulses of between 41 and 6.5 ps (FWHM) at 1.23 /spl mu/m with average output powers of between 280 and 380 mW, respectively. Using intracavity negative group-velocity-dispersion compensation, nearly transform-limited femtosecond pulses of 48 fs (FWHM) duration were generated with average TEM/sub 00/ output powers of 380 mW at 1.23 /spl mu/m. By tuning the output of the mode-locked laser from 1.211 to 1.264 /spl mu/m, the dispersion (second and third order) of the Cr:forsterite gain medium has been measured. The operational wavelength range of the laser was extended to the visible region from 605 to 635 nm by external frequency doubling in a LiIO/sub 3/ nonlinear crystal. With approximately 250 mW of fundamental pump power at 1.23 /spl mu/m, red pulses of 116 fs (FWHM) duration at 615 nm were obtained with conversion efficiencies approaching 10 percent.
机译:给出了由连续波Nd:YAG激光器泵浦的再生引发,自锁模Cr:镁橄榄石激光器的设计和工作特性的详细说明。在不补偿腔内正群速度色散的情况下,再生声光调制以1.23 / spl mu / m的速度产生41至6.5 ps(FWHM)之间的脉冲,平均输出功率分别为280至380 mW。使用腔内负向群速度色散补偿,在1.23 / spl mu / m的平均TEM / sub 00 /输出功率为380 mW时,产生了持续时间为48 fs(FWHM)的几乎受变换限制的飞秒脉冲。通过将锁模激光器的输出从1.211调整到1.264 / spl mu / m,已测量了Cr:镁橄榄石增益介质的色散(二阶和三阶)。通过在LiIO / sub 3 /非线性晶体中加倍外部频率,将激光器的工作波长范围扩展到605至635 nm的可见光区域。在1.23 / spl mu / m的情况下使用约250 mW的基本泵浦功率时,在615 nm处获得116 fs(FWHM)持续时间的红色脉冲,转换效率接近10%。

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