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首页> 外文期刊>Physical Review, A >Strong-field subcycle control of dissociation dynamics via exceptional points of molecules in an electric field
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Strong-field subcycle control of dissociation dynamics via exceptional points of molecules in an electric field

机译:通过电场中分子的特殊点对解离动力学的强场亚单次控制

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Quantum systems depending on parameters may have exceptional points (EPs) in the parameter space where complex energies of their resonance states coalesce. Here we show that electronic Siegert states of molecules in a static electric field have EPs in the internuclear distance-field strength plane. Given a molecule undergoing dissociation launched, e.g., by its photoionization, the EPs enable one to control the final state of the products by applying a strong low-frequency laser pulse. The possibility of such a control has a threshold dependence on the pulse intensity, which is the main signature of the EPs in observables. The control occurs on subcycle time scales and can be accomplished by few-cycle pulses of the type used in strong-field physics. We present a theory predicting and describing this mechanism and illustrate it by calculations for the process H_2~+(2pσ_u) → H(nl) + p.
机译:根据参数的量子系统可以在参数空间中具有异常点(EPS),其中其共振状态的复合能量聚结。 在这里,我们显示静电场中的分子的电子Siegert状态在核心距离场强平面中具有EPS。 考虑到经历解离的分子,例如通过其光相消除,EPS通过施加强的低频激光脉冲来控制最终状态。 这种控制的可能性具有对脉冲强度的阈值依赖性,这是可观察到的EPS的主要签名。 对照发生在子循环时间尺度上,并且可以通过在强外场物理学中使用的类型的几个循环脉冲来实现。 我们提出了一种预测和描述该机制的理论,并通过计算过程H_2〜+(2pσ_u)→h(nl)+ p的计算来说明它。

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