Gilles L, Moloney J V, Vázquez L
Escuela Superior de Informática, Departamento de Matemática Aplicada, Universidad Complutense, E-28040 Madrid, Spain.
Phys Rev E Stat Phys Plasmas Fluids Relat Interdiscip Topics. 1999 Jul;60(1):1051-9. doi: 10.1103/physreve.60.1051.
The dynamical evolution of an intense ultrashort sub-10-fs two-cycle optical pulse is considered as it propagates through a transparent third-order dielectric medium characterized by three resonance lines and a finite sub-fs relaxation time of the electronic nonlinearity. Numerical integration of the full Maxwell's equations incorporating triple-resonance Lorentz linear dispersion and Debye nonlinear dispersion, for a linearly polarized electromagnetic pulse centered at lambda(0)=1.24 microm in the normal dispersion region near the zero dispersion wavelength, shows the formation of shocks occurring on the optical cycle due to the generation of optical harmonics. The finite relaxation time of the nonlinear electronic response (sub-fs time scale) (i) slows down the steepening rate of the optical cycle; (ii) does not limit the generation of strongly phase matched optical harmonics, and consequently the development of infinitely sharp edges on the optical cycle producing its breaking when linear dispersion is not included; (iii) reduces the production of phase matched harmonics and consequently the sharpening of the jumps when dispersion is present, compared to the case of an instantaneous nonlinear response; and (iv) reduces the harmonic spectrum spreading and modulation at later times on the appearance of self-steepening of the electric field envelope.
研究了强度极高的亚10飞秒双周期光脉冲在透明三阶介电介质中传播时的动力学演化,该介质具有三条共振线且电子非线性具有有限的亚飞秒弛豫时间。对于在零色散波长附近的正常色散区域中以λ(0)=1.24微米为中心的线偏振电磁脉冲,对包含三重共振洛伦兹线性色散和德拜非线性色散的完整麦克斯韦方程组进行数值积分,结果表明由于光学谐波的产生,在光学周期上会形成冲击波。非线性电子响应的有限弛豫时间(亚飞秒时间尺度):(i)减缓了光学周期的陡峭速率;(ii)不限制强相位匹配光学谐波的产生,因此在不包括线性色散时,光学周期上会产生无限尖锐的边缘并导致其破裂;(iii)与瞬时非线性响应的情况相比,当存在色散时,减少了相位匹配谐波的产生,从而减少了跃变的锐化;(iv)在电场包络出现自陡峭现象的后期,减少了谐波频谱的展宽和调制。