Omar Alan, Hoffmann Martin, Galle Geoffrey, Sylla François, Saraceno Clara J
Opt Express. 2024 Apr 8;32(8):13235-13248. doi: 10.1364/OE.513732.
Multi-pass cell (MPC) compressors have proven to be the method of choice for compression of high average power long-pulse Yb lasers. Yet, generating sub-30 fs pulses at high pulse energy with compact and simple components remains a challenge. This work demonstrates an efficient and cost-effective approach for nonlinear pulse compression at high pulse energy using a hybrid air-bulk MPC. By carefully balancing the relative nonlinear contributions of ambient air and fused silica, we achieve strong spectral broadening without dispersion engineering or pressure-control inside the cell at 400-µJ pulse energy. In this way, we compress pulses from 220 fs to 27 fs at 40.3 W of average power (100 kHz repetition rate), enhancing the peak power from 1.6 GW to 10.2 GW while maintaining 78% of the energy within the main pulse. Our approach combines the strengths of gas-filled and bulk compression schemes and exhibits excellent overall optical transmission (91%) and spectral uniformity. Moreover, we utilize the INSIGHT technique to investigate spatio-temporal couplings and geometrical aberrations of the compressed pulse. Our results demonstrate remarkable temporal homogeneity, with an average Strehl ratio of 0.97 consistently observed throughout the entire spectral profile. Additionally, all spectrally-integrated Zernike coefficients for geometrical aberrations maintain values below 0.02λ.
多程池(MPC)压缩器已被证明是高平均功率长脉冲Yb激光器压缩的首选方法。然而,使用紧凑且简单的组件在高脉冲能量下产生亚30 fs脉冲仍然是一个挑战。这项工作展示了一种使用混合空气-块状MPC在高脉冲能量下进行非线性脉冲压缩的高效且经济高效的方法。通过仔细平衡环境空气和熔融石英的相对非线性贡献,我们在400 μJ脉冲能量下无需色散工程或池内压力控制即可实现强烈的光谱展宽。通过这种方式,我们在平均功率为40.3 W(重复频率为100 kHz)的情况下将脉冲从220 fs压缩至27 fs,将峰值功率从1.6 GW提高到10.2 GW,同时保持主脉冲内78%的能量。我们的方法结合了充气压缩和块状压缩方案的优点,并展现出出色的整体光学传输(91%)和光谱均匀性。此外,我们利用INSIGHT技术研究压缩脉冲的时空耦合和几何像差。我们的结果显示出显著的时间均匀性,在整个光谱轮廓中始终观察到平均斯特列尔比为0.97。此外,所有用于几何像差的光谱积分泽尼克系数的值均保持在0.02λ以下。