Nguyen Dat, Piracha Mohammad Umar, Mandridis Dimitrios, Delfyett Peter J
CREOL, The College of Optics and Photonics, University of Central Florida, Orlando, Florida 32816, USA.
Opt Express. 2011 Jun 20;19(13):12305-11. doi: 10.1364/OE.19.012305.
Self-phase modulation in fiber amplifiers can significantly degrade the quality of compressed pulses in chirped pulse amplification systems. Parabolic pulses with linear frequency chirp are suitable for suppressing nonlinearities, and to achieve high peak power pulses after compression. In this paper, we present an active time domain technique to generate parabolic pulses for chirped pulse amplification applications. Pulses from a mode-locked laser are temporally stretched and launched into an amplitude modulator, where the drive voltage is designed using the spectral shape of the input pulse and the transfer function of the modulator, resulting in the generation of parabolic pulses. Experimental results of pulse shaping with a pulse train from a mode-locked laser are presented, with a residual error of less than 5%. Moreover, an extinction ratio of 27 dB is achieved, which is ideal for chirped pulse amplification applications.
光纤放大器中的自相位调制会显著降低啁啾脉冲放大系统中压缩脉冲的质量。具有线性频率啁啾的抛物线脉冲适用于抑制非线性,并在压缩后获得高峰值功率脉冲。在本文中,我们提出了一种有源时域技术,用于生成用于啁啾脉冲放大应用的抛物线脉冲。锁模激光器产生的脉冲在时间上被展宽并输入到一个幅度调制器中,在该调制器中,驱动电压根据输入脉冲的频谱形状和调制器的传递函数进行设计,从而产生抛物线脉冲。文中给出了利用锁模激光器的脉冲序列进行脉冲整形的实验结果,残余误差小于5%。此外,还实现了27 dB的消光比,这对于啁啾脉冲放大应用来说是理想的。