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基于多程Nd:YAG曲折平板放大器结构的窄线宽、准连续波ASE光源。

Narrow-linewidth, quasi-continuous-wave ASE source based on a multiple-pass Nd:YAG zigzag slab amplifier configuration.

作者信息

Chen Xiaoming, Lu Yanhua, Hu Hao, Tong Lixin, Zhang Lei, Yu Yi, Wang Juntao, Ren Huaijin, Xu Liu

出版信息

Opt Express. 2018 Mar 5;26(5):5602-5608. doi: 10.1364/OE.26.005602.

Abstract

We present investigations into a narrow-linewidth, quasi-continuous-wave pulsed all-solid-state amplified spontaneous emission (ASE) source by use of a novel multiple-pass zigzag slab amplifier. The SE fluorescence emitted from a Nd:YAG slab active medium acts as the seed and is amplified back and forth 8 times through the same slab. Thanks to the angular multiplexing nature of the zigzag slab, high-intensity 1064-nm ASE output can be produced without unwanted self-lasing in this configuration. Experimentally, the output energy, optical conversion efficiency, pulse dynamics, spectral property, and beam quality of the ASE source are studied when the Nd:YAG slab end-pumped by two high-brightness laser diode arrays. The maximum single pulse energy of 347 mJ is generated with an optical efficiency of ~5.9% and a beam quality of 3.5/17 in the thickness/width direction of the slab. As expected, smooth pulses without relaxing spikes and continuous spectra are achieved. Moreover, the spectral width of the ASE source narrows versus the pump energy, getting a 3-dB linewidth of as narrow as 20 pm (i.e. 5.3 GHz). Via the sum frequency generation, high-intensity, smooth-pulse, and narrow-linewidth ASE sources are preferred for solving the major problem of saturation of the mesospheric sodium atoms and can create a much brighter sodium guide star to meet the needs of adaptive imaging applications in astronomy.

摘要

我们展示了对一种窄线宽、准连续波脉冲全固态放大自发辐射(ASE)源的研究,该源采用了一种新型的多程曲折平板放大器。从Nd:YAG平板有源介质发射的SE荧光作为种子光,并在同一平板中来回放大8次。由于曲折平板的角度复用特性,在这种配置下可以产生高强度的1064 nm ASE输出,而不会出现不需要的自激振荡。实验上,当Nd:YAG平板由两个高亮度激光二极管阵列进行端面泵浦时,研究了ASE源的输出能量、光学转换效率、脉冲动力学、光谱特性和光束质量。在平板的厚度/宽度方向上,产生了最大单脉冲能量为347 mJ,光学效率约为5.9%,光束质量为3.5/17。正如预期的那样,实现了没有弛豫尖峰的平滑脉冲和连续光谱。此外,ASE源的光谱宽度随泵浦能量变窄,获得了低至20 pm(即5.3 GHz)的3 dB线宽。通过和频产生,高强度、平滑脉冲和窄线宽的ASE源对于解决中层钠原子饱和的主要问题是优选的,并且可以创建一个更亮的钠导星,以满足天文学中自适应成像应用的需求。

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