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Polarization domains and self-mode-locked pulses in an erbium-doped fiber laser
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作者 程佩芸 韩孟孟 +1 位作者 杜岳卿 舒学文 《Chinese Optics Letters》 SCIE EI CAS CSCD 2023年第3期71-76,共6页
We have observed various polarization domains and a giant self-mode-locked pulse in a 130 m long erbium-doped fiber laser without any mode-locking devices.By adjusting the intracavity polarization controller,we invest... We have observed various polarization domains and a giant self-mode-locked pulse in a 130 m long erbium-doped fiber laser without any mode-locking devices.By adjusting the intracavity polarization controller,we investigated the evolution process of the polarization domain with the varying cavity birefringence.When the birefringence was close to zero,the polarization domains split into multidomains,and finally a giant self-mode-locked pulse formed for the first time.We analyzed that the generation of the self-mode-locked pulse was related to the multiple subdomains ascribed to the strong coherent cross coupling between the orthogonal polarization light components in the long fiber cavity. 展开更多
关键词 fiber lasers polarization domains self-mode-locked pulse nonlinear optics
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Multi-peak spectrum of KML Ti:sapphire pulse
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作者 Shanghong Zhao Yishan Wang +2 位作者 Guofu Chen Xianhua Wang Xun Hou 《Chinese Science Bulletin》 SCIE EI CAS 1999年第8期690-694,共5页
The multi-peak spectrum of Ti: sapphire pulses observed experimentally under ultra-broad bandwidth conditions ( 【 15 fs pulse length) has been explained theoretically. It is shown that the self-phase-modulation effec... The multi-peak spectrum of Ti: sapphire pulses observed experimentally under ultra-broad bandwidth conditions ( 【 15 fs pulse length) has been explained theoretically. It is shown that the self-phase-modulation effect is equivalent to the process of degenerate four-wave frequency-mixing. Based on this theoretical underpinning, the presence or absence of a multipeak spectrum provides a practical measure of whether the intracavity group-velocity-dispersion is ideally compensated for or not. 展开更多
关键词 Ti: SAPPHIRE self-mode-lockING multi-peak SPECTRUM self-phase-modulation four-wave frequency-mixing.
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