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Interatomic Coulombic decay cascades in multiply excited neon clusters

机译:多重激发氖团簇中的原子间库仑衰变级联

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摘要

In high-intensity laser light, matter can be ionized by direct multiphoton absorption even at photon energies below the ionization threshold. However on tuning the laser to the lowest resonant transition, the system becomes multiply excited, and more efficient, indirect ionization pathways become operative. These mechanisms are known as interatomic Coulombic decay (ICD), where one of the species de-excites to its ground state, transferring its energy to ionize another excited species. Here we show that on tuning to a higher resonant transition, a previously unknown type of interatomic Coulombic decay, intra-Rydberg ICD occurs. In it, de-excitation of an atom to a close-lying Rydberg state leads to electron emission from another neighbouring Rydberg atom. Moreover, systems multiply excited to higher Rydberg states will decay by a cascade of such processes, producing even more ions. The intra-Rydberg ICD and cascades are expected to be ubiquitous in weakly-bound systems exposed to high-intensity resonant radiation.
机译:在高强度激光中,即使在低于电离阈值的光子能量下,也可以通过直接多光子吸收使物质电离。但是,在将激光器调谐到最低共振跃迁时,系统变得多重激发,并且更有效的间接电离途径开始起作用。这些机制被称为原子间库仑衰变(ICD),其中一种物质会激发到其基态,从而转移其能量使另一个被激发的物质离子化。在这里,我们表明,在调谐到更高的共振跃迁时,会发生以前未知的原子间库仑衰变类型,里德堡内ICD。在其中,原子被激发到接近的里德堡态会导致电子从另一个相邻的里德堡原子发射出去。此外,被激增至更高的里德堡态的系统将通过一系列这样的过程而衰减,从而产生更多的离子。在暴露于高强度共振辐射的弱束缚系统中,里德堡内ICD和级联有望普遍存在。

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