光子学报, 2014, 43 (7): 0706012, 网络出版: 2014-08-18   

基于液晶空间光调制器的脉冲整形系统校准及应用

Calibration and Application of Optical Pulse Shaping System based on Liquid Crystal Spatial Light Modulator
作者单位
北京航空航天大学 电子信息工程学院, 北京 100191
摘要
搭建了反射式光脉冲整形系统,通过改变加载到液晶空间光调制器各像素点的调制电压,测定系统分辨率及调制电压与输出信号光强和相位变化的关系,并对液晶空间光调制器进行校准.实验结果表明:光强随调制电压周期变化,相位随调制电压非线性变化;系统分辨率为10 GHz,像素调制间隔为0.08 nm,即能够实现对频率间隔10 GHz的光信号的调制.应用该系统,以谱线间隔为10 GHz的光学频率梳为信号源,对脉冲频谱进行整形,产生了平坦、高斯型、三角、倒三角及光学频率梳信号.
Abstract
A reflective optical pulse shaping system based on liquid crystal spatial light modulator was built. With changing the modulation voltage loading into the pixel on the liquid crystal spatial light modulator, the system resolution and the relationship between the output including intensity and phase and the modulation voltage were measured. And the modulator′s calibration was discussed. The resules show that the intensity changes with modulation voltage linearly, while the phase is nonlinear. The frequency resolution of pulse shaping system is 10 GHz, corresponding 0.08 nm wavelength resolution, which can realize the modulation of optical signal with frequency interval of 10 GHz. An optical frequency comb with 10 GHz spectral spacing was adoped as the light source. Spectrum shaping was performed and flat spectrum, Gaussian spectrum, triangular spectrum and inverted triangle spectrum were generated experimentally.
参考文献

[1] 杨振峰,杨振军,张书敏.超短双曲正割脉冲的两种脉冲宽度比较[J].光子学报,2008,37(9):1722.

    YANG Zhenfeng, YANG Zhenjun, ZHANG Shumin. Comparision of two kinds of pulse width of ultrashort hyperbolic secant pulses[J]. Acta Photonica Sinica, 2008, 37(9): 1722.

[2] WEINER A M. Femtosecond optical pulse shaping and processing[J]. Progress in Quantum Electronics, 1995, 19: 161-237.

[3] 俞本立, 毛红敏.光学超短脉冲整形的研究进展[J]. 安徽大学学报,2005,29(2):45-48.

    YU Benli, MAO Hongmin. A review of optical ultrashort shaping[J]. Journal of Anhui university, 2005, 29(2): 45-48.

[4] 李东,刘百玉.用于高功率激光装置中的电脉冲整形系统[J].光子学报,2005,34(2):1304.

    LI Dong, LIU Baiyu. Electrical pulseshaping system on the high power laser system[J]. Acta Photonica Sinica, 2005, 34(2): 1304.

[5] WEINER A M, HERITAGE J P, KIRSCHNER E M. Highresolution femtosecond pulse shaping[J]. Journal of the Optical Society of America B, 1988, 5: 1563-1571.

[6] 邹华,周常河.飞秒脉冲时空变换整形技术[J]. 激光与光电子学进展,2005,42(2):2-4.

    ZOU Hua, ZHOU Changhe. Femtosecond pulse shaping with spacetime conversion technique[J]. Laser &Optoelectronics Progress, 2005, 42(2): 2-4.

[7] 陈怀新,隋 展,陈祯培,等.采用液晶空间光调制器进行激光光束的空间整形[J].光学学报,2001,21(9):1108-1109.

    CHEN Huaixin, SUI Zhan, CHAN Zhenpei, et al. Laser beam shaping using liquid crystal spatial light modulator[J]. Acta Optica Sinica, 2001, 21(9): 1108-1109.

[8] ANDREW M W. Femtosecond pulse shaping using spatial light modulators[J]. Review of Scientific Instruments, 2000, 71(5): 1930-1932.

[9] 韩军,郑婷,聂亮,等.基于空间光调制器的波面重建优化方法研究[J].光子学报,2011,40(9):1414.

    HAN Jun, ZHENG Ting, NIE Liang, et al. Optimization method of reconstruct wavefront based on spatial light modulator[J]. Acta Photonica Sinica, 2011, 40(9): 1414.

[10] WEINER A M. Spectral LinebyLine Pulse shaping on an optical frequency comb generator[J]. IEEE Journal of Quantum Electronics, 2007, 43(12): 1165-1167.

[11] WEINER A M, LEAIRD D E, PATEL J S, et al. Programmable shaping of femtosecond optical pulses by use of 128element liquid crystal phase modulator[J]. IEEE Journal of Quantum Electronics, 2009, 28(4): 909-914.

安国, 闫娟娟, 刘娅. 基于液晶空间光调制器的脉冲整形系统校准及应用[J]. 光子学报, 2014, 43(7): 0706012. AN Guo, YAN Juanjuan, LIU Ya. Calibration and Application of Optical Pulse Shaping System based on Liquid Crystal Spatial Light Modulator[J]. ACTA PHOTONICA SINICA, 2014, 43(7): 0706012.

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