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Anisotropic attosecond charge carrier dynamics and layer decoupling in quasi-2D layered SnS 2

机译:准2D层状SnS 2中各向异性阿秒电荷载流子动力学和层解耦

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摘要

Strong quantum confinement effects lead to striking new physics in two-dimensional materials such as graphene or transition metal dichalcogenides. While spectroscopic fingerprints of such quantum confinement have been demonstrated widely, the consequences for carrier dynamics are at present less clear, particularly on ultrafast timescales. This is important for tailoring, probing, and understanding spin and electron dynamics in layered and two-dimensional materials even in cases where the desired bandgap engineering has been achieved. Here we show by means of core–hole clock spectroscopy that SnS2 exhibits spin-dependent attosecond charge delocalization times (τ deloc) for carriers confined within a layer, τ deloc 2.7?fs. These layer decoupling dynamics are a direct consequence of strongly anisotropic screening established within attoseconds, and demonstrate that important two-dimensional characteristics are also present in bulk crystals of van der Waals-layered materials, at least on ultrafast timescales.
机译:强大的量子限制效应导致二维材料(例如石墨烯或过渡金属二卤化碳)具有惊人的新物理学。虽然已经广泛证明了这种量子限制的光谱指纹,但是对于载流子动力学的后果目前还不清楚,特别是在超快时标上。这对于剪裁,探测和理解层状和二维材料中的自旋和电子动力学非常重要,即使在实现了所需的带隙工程的情况下。在这里,我们通过核孔时钟光谱法表明,SnS2对于局限在τloc 2.7?fs内的载流子表现出自旋相关的阿秒电荷离域时间(τloc)。这些层解耦动力学是在十亿分之一秒内建立的强各向异性筛选的直接结果,并且证明至少在超快时间尺度上,范德华层状材料的块状晶体中也存在重要的二维特性。

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