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Electromagnetically induced transparency with quantum interferometry

机译:电磁干涉与量子干涉法的透明度

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We have shown that electromagnetically induced transparency can be achieved by control-probe interferometry using two delayed phase-locked ultrashort pulses. Two vibrational wavepackets on the excited state, excited by two delayed phase-locked ultrashort pulses, interfere constructively or destructively leading to enhancement or suppression of absorption to a selective set of vibrational levels. Depending on the phase difference and the delay between the pulses with same carrier frequency, one can design different transparency windows between absorption peaks at consecutive even(odd) vibrational levels by eliminating absorption at odd(even) vibrational levels. We have shown that by switching the phase difference of two delayed femtosecond pulses, one can switch to complete elimination of absorption from enhanced absorption to a particular set of vibrational levels in the excited state. Thus, switching of transparency through window between odd vibrational levels to that between even vibrational levels is possible. By properly choosing the temporal width and the carrier frequency of the pulses, lossless transmission of complete or bands of frequencies of the pulses can be achieved through these transparency windows. Hence, designing of single- or multi-mode transparency windows in NaH molecule is feasible by control-probe quantum interferometry.
机译:我们已经表明,通过使用两个延迟的锁相超短脉冲的控制探针干涉法可以实现电磁感应的透明性。处于两个激发态的两个振动波包,被两个延迟的锁相超短脉冲激发,相长或相消地干涉,从而将吸收增强或抑制到一组选定的振动水平。根据相位差和具有相同载波频率的脉冲之间的延迟,可以通过消除奇数(偶数)振动级的吸收,在连续偶数(奇数)振动级的吸收峰之间设计不同的透明窗口。我们已经表明,通过切换两个延迟的飞秒脉冲的相位差,可以切换到完全消除吸收,从增强吸收到激发态的一组特定振动水平。因此,可以通过在奇数振动水平之间的窗口到偶数振动水平之间的窗口的透明性的切换。通过适当地选择的完整或脉冲的频率的频带中的时间宽度和脉冲的载波频率,无损传输可以通过这些透明度窗口来实现。因此,通过控制探针量子干涉法设计NaH分子中的单模或多模透明窗是可行的。

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