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激光中抛物线脉冲的自相似演化

Self-similar evolution of parabolic pulses in a laser.

作者信息

Ilday F O, Buckley J R, Clark W G, Wise F W

机构信息

Department of Applied Physics, Cornell University, 212 Clark Hall, Ithaca, New York 14853, USA.

出版信息

Phys Rev Lett. 2004 May 28;92(21):213902. doi: 10.1103/PhysRevLett.92.213902. Epub 2004 May 27.

Abstract

Self-similar propagation of ultrashort, parabolic pulses in a laser resonator is observed theoretically and experimentally. This constitutes a new type of pulse shaping in mode-locked lasers: in contrast to the well-known static (solitonlike) and breathing (dispersion-managed soliton) pulse evolutions, asymptotic solutions to the nonlinear wave equation that governs pulse propagation in most of the laser cavity are observed. Stable self-similar pulses exist with energies much greater than can be tolerated in solitonlike pulse shaping, and this has implications for practical lasers.

摘要

理论和实验观察到超短抛物线脉冲在激光谐振器中的自相似传播。这构成了锁模激光器中一种新型的脉冲整形:与众所周知的静态(类孤子)和呼吸型(色散管理孤子)脉冲演化不同,观察到了在大多数激光腔中控制脉冲传播的非线性波动方程的渐近解。存在能量比类孤子脉冲整形所能承受的能量大得多的稳定自相似脉冲,这对实际激光器具有重要意义。

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