Direct amplification of femtosecond optical vortices in a single-crystal fiber

被引:0
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作者
CHANGSHENG ZHENG [1 ]
TIANYI DU [1 ]
LEI ZHU [1 ]
ZHANXIN WANG [1 ]
KANGZHEN TIAN [1 ]
YONGGUANG ZHAO [1 ]
ZHIYONG YANG [1 ]
HAOHAI YU [2 ]
VALENTIN PETROV [3 ]
机构
[1] Jiangsu Key Laboratory of Advanced Laser Materials and Devices, School of Physics and Electronic Engineering, Jiangsu Normal University
[2] State Key Laboratory of Crystal Materials and Institute of Crystal Materials, Shandong University  3. Max Born Institute for Nonlinear Optics and Short Pulse Spectroscopy
基金
中国国家自然科学基金;
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中图分类号
TN24 [激光技术、微波激射技术];
学科分类号
摘要
Spatially twisted light with femtosecond temporal structure is of particular interest in strong-field physics and light–matter interactions. However, present femtosecond vortex sources exhibit limited power handling capabilities, and their amplification remains an ongoing challenge particularly for high-order orbital angular momentum(OAM)states due to several inherent technical difficulties. Here, we exploit a straightforward approach to directly amplify a femtosecond optical vortex(FOV, OAM =-8?) by using a two-stage single-crystal fiber(SCF) amplifier system without pulse stretching and compression in the time domain, delivering 23-W, 163-fs pulses at a repetition rate of1 MHz. The spatial and temporal features are well-conserved during the amplification, as well as the high modal purity(>96%). The results indicate that the multi-stage SCF amplifier system is particularly suited for direct amplification of high-order FOVs. The generated high-power femtosecond OAM laser beams are expected to help reveal complex physical phenomena in light–matter interactions and pave the way for practical applications in attoscience, laser plasma acceleration, and high-dimension micromachining.
引用
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页码:27 / 32
页数:6
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