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首页> 外文期刊>Physical review letters >Adiabatic Passage to the Continuum: Controlling Ionization with Chirped Laser Pulses
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Adiabatic Passage to the Continuum: Controlling Ionization with Chirped Laser Pulses

机译:连续体的绝热通道:利用Chi激光脉冲控制电离

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We demonstrate that, by changing the direction of the chirp in vacuum-ultraviolet pulses, one can switch between excitation and ionization with very high contrast, if the carrier frequency of the light is resonant with two bound states. This is a surprising consequence of rapid adiabatic passage if extended to include transitions to the continuum. The chirp phase locks the linear combination of the two resonantly coupled bound states whose ionization amplitudes interfere constructively or destructively depending on the chirp direction under suitable conditions. We derive the phenomenon in a minimal model and verify the effect with calculations for helium as a realistic example.
机译:我们证明,通过改变真空紫外脉冲中线性调频脉冲的方向,如果光的载波频率在两个束缚态之间共振,则可以在激发和电离之间切换,具有很高的对比度。如果扩展到包括到连续体的过渡,这是快速绝热通过的令人惊讶的结果。线性调频相位锁定两个共振耦合的束缚态的线性组合,其离子化幅度取决于线性调频脉冲的方向在适当条件下相长或相消。我们以最小模型导出该现象,并通过计算氦气作为实际示例验证其效果。

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