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Formation of optical pulses by modulating the resonant quantum transition frequency in a spectrally inhomogeneous medium

机译:通过在光谱非均匀介质中调制共振量子跃迁频率来形成光脉冲

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We consider the conversion of monochromatic radiation in the case of resonant interaction with a quantum system under the condition of harmonic modulation of the quantum transition frequency by the action of additional nonresonant radiation due to the Stark or Zeeman effect, taking into account the inhomogeneous broadening of the quantum transition line. It is shown analytically and numerically that resonant radiation can be converted in a train of ultrashort pulses with a peak intensity exceeding manifold the incident wave intensity. The possibility of the additional compression of the produced pulses is studied by compensating the inherent frequency modulation in a medium with a quadratic or programmable dispersion. The optimal values of the radiation matter interaction parameters are found numerically. It is shown that generation of femtosecond optical pulses of radiation quasi-resonant to the 8 transition of the atomic hydrogen Balmer series is possible.
机译:考虑到Stark或Zeeman效应引起的额外非共振辐射的作用,我们考虑了在量子跃迁频率的谐波调制条件下与量子系统发生共振相互作用的情况下,单色辐射的转换。量子跃迁线。分析和数值显示,共振辐射可以在一系列超短脉冲中转换,峰值强度超过入射波强度。通过补偿具有二次或可编程色散的介质中的固有频率调制,可以研究对产生的脉冲进行额外压缩的可能性。通过数值找到辐射物质相互作用参数的最佳值。结果表明,可能产生与原子氢巴尔默级数的8跃迁准谐振的飞秒光脉冲。

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