首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Propagation and amplification of ultrashort light pulses in a resonant two-level medium: finite-difference time-domain analysis
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Propagation and amplification of ultrashort light pulses in a resonant two-level medium: finite-difference time-domain analysis

机译:超短光脉冲在共振两能级介质中的传播和放大:时域有限差分分析

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摘要

Propagation and amplification of an ultrashort laser pulse in a two-level medium is numerically investigated with the use of the finite-difference time-domain (FDTD) procedure simultaneously solving Maxwell and Schrodinger equations with no assumptions characteristic of slowly varying envelope approximation. Comparison of the results of FDTD numerical simulations with the predictions of the pulse area theorem has demonstrated that the developed numerical procedure provides an adequate description of pulse evolution in a two-level medium. Amplification of ultrashort light pulses in a two-level medium is analyzed. Two methods of improving the gain of ultrashort pulses in a two-level medium by modulating the spatial distribution of dipole moments of resonant transitions and using initially chirped frequency-detuned pulses are explored.
机译:使用有限差分时域(FDTD)程序,同时解决Maxwell和Schrodinger方程,并且不考虑包络近似缓慢变化的特征,通过数值研究了超短激光脉冲在两级介质中的传播和放大。将FDTD数值模拟的结果与脉冲面积定理的预测结果进行比较,结果表明,所开发的数值程序可以很好地描述两级介质中的脉冲演化。分析了两级介质中超短光脉冲的放大。探索了两种方法,通过调制谐振跃迁的偶极矩的空间分布并使用最初的frequency频失谐脉冲来提高两能级介质中超短脉冲的增益。

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