Nie Yongming, Ma Haotong, Li Xiujian, Hu Wenhua, Yang Jiankun
Tech-Physical Research Center of Science College, National University of Defense Technology, Changsha, Hunan 410073, China.
Appl Opt. 2011 Jul 20;50(21):4174-9. doi: 10.1364/AO.50.004174.
Based on the refractive laser beam shaping system, the dark hollow femtosecond pulse beam shaping technique with a phase-only liquid crystal spatial light modulator (LC-SLM) is demonstrated. The phase distribution of the LC-SLM is derived by the energy conservation and constant optical path principle. The effects of the shaping system on the temporal properties, including spectral phase distribution and bandwidth of the femtosecond pulse, are analyzed in detail. Experimental results show that the hollow intensity distribution of the output pulsed beam can be maintained much at more than 1200 mm. The spectral phase of the pulse is changed, and the pulse width is expanded from 199 to 230 fs, which is caused by the spatial-temporal coupling effect. The coupling effect mainly depends on the phase-only LC-SLM itself, not on its loaded phase distribution. The experimental results indicate that the proposed shaping setup can generate a dark hollow femtosecond pulsed beam effectively, because the temporal Gaussian waveform is unchanged.
基于折射激光束整形系统,展示了一种利用纯相位液晶空间光调制器(LC-SLM)的暗空心飞秒脉冲光束整形技术。通过能量守恒和光程恒定原理推导了LC-SLM的相位分布。详细分析了整形系统对飞秒脉冲时间特性的影响,包括光谱相位分布和带宽。实验结果表明,输出脉冲光束的空心强度分布在超过1200毫米的距离内仍能得到较好保持。脉冲的光谱相位发生了变化,脉冲宽度从199飞秒扩展到230飞秒,这是由时空耦合效应引起的。耦合效应主要取决于纯相位LC-SLM本身,而不是其加载的相位分布。实验结果表明,所提出的整形装置能够有效地产生暗空心飞秒脉冲光束,因为时间高斯波形未发生变化。