García-Vela A
Instituto de Física Fundamental , Consejo Superior de Investigaciones Científicas , Serrano 123 , 28006 Madrid , Spain.
J Phys Chem A. 2019 Aug 29;123(34):7394-7400. doi: 10.1021/acs.jpca.9b04892. Epub 2019 Aug 19.
A weak-field coherent control scheme is applied in order to enhance the decay lifetime of a superposition of overlapping resonance states. The scheme uses a pump laser field consisting of two pulses delayed in time, each of them exciting a different energy at which several resonances of the Ne-Br(B) complex overlap. Simultaneous excitation of these two energies induces interference between the overlapping resonances, which causes an enhancement of the lifetime of the superposition created. By variation of the delay time between the pulses, the mechanism of resonance interference can be controlled and optimized to achieve a maximum lifetime enhancement. The optimal delay time between pulses leading to maximum superposition lifetime can be quantitatively predicted with a simple law. The effect of the interference mechanism on the lifetime enhancement is investigated. It is found that interference induces a transfer of amplitude between the different resonances back and forth, which delays significantly the natural resonance decay, increasing the global lifetime of the superposition. Due to the simplicity of the control scheme, a wide applicability is envisioned.
为了延长重叠共振态叠加态的衰变寿命,应用了一种弱场相干控制方案。该方案使用由两个时间上延迟的脉冲组成的泵浦激光场,每个脉冲激发不同的能量,在该能量下Ne-Br(B)复合物的几个共振重叠。同时激发这两种能量会在重叠共振之间产生干涉,这导致所创建叠加态的寿命延长。通过改变脉冲之间的延迟时间,可以控制和优化共振干涉机制,以实现最大的寿命延长。导致最大叠加寿命的脉冲之间的最佳延迟时间可以用一个简单的定律进行定量预测。研究了干涉机制对寿命延长的影响。发现干涉会在不同共振之间来回诱导幅度转移,这显著延迟了自然共振衰变,增加了叠加态的整体寿命。由于控制方案的简单性,预计具有广泛的适用性。