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Effect of quintic nonlinearity on self-phase modulation and modulation instability in multiple coupled quantum wells under electromagnetically induced transparency

机译:电磁诱导透明下多相耦合量子阱中自相调制和调制不稳定性的近视非线性的影响

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The self-phase modulation and modulation instability of an optical probe electromagnetic field in multiple quantum well systems under electromagnetically induced transparency has been investigated. The probe field experiences large Kerr and quintic nonlinearities that can be controlled by two controlling laser beams. The probe beam experiences self-phase modulation which is suppressed by the quintic nonlinearity. The probe field is modulationally unstable due to the existence of large nonlinearities. The bandwidth of unstable frequencies and growth of the instability could be controlled by the probe beam power, the Rabi frequency and detunings of two control fields. The presence of the higher order nonlinearity and dispersion significantly reduce the instability growth and bandwidth of unstable frequency.
机译:研究了在电磁诱导的透明度下多量子阱系统中的光学探针电磁场的自相调制和调制不稳定性。探针场经历大kerr和五通非线性,可以由两个控制激光束控制。探针光束体验由五通非线性抑制的自相调制。由于大非线性存在,探测器领域正在调节不稳定。不稳定频率的带宽和不稳定性的生长可以通过探针光束功率,Rabi频率和两个控制场的损伤来控制。高阶非线性和分散的存在显着降低了不稳定频率的不稳定生长和带宽。

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