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Coherent multidimensional photoelectron spectroscopy of ultrafast quasiparticle dressing by light

机译:轻辐射浅色敷料的相干多维光电子能谱

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Depending on the applied strength, electromagnetic fields in electronic materials can induce dipole transitions between eigenstates or distort the Coulomb potentials that define them. Between the two regimes, they can also modify the electronic properties in more subtle ways when electron motion becomes governed by time and space-periodic potentials. The optical field introduces new virtual bands through Floquet engineering that under resonant conditions interacts strongly with the preexisting bands. Under such conditions the virtual bands can become real, and real ones become virtual as the optical fields and electronic band dispersions entangle the electronic response. We reveal optical dressing of electronic bands in a metal by exciting four-photon photoemission from the Cu(111) surface involving a three-photon resonant transition from the Shockley surface band to the first image potential band. Attosecond resolved interferometric scanning between identical pump-probe pulses and its Fourier analysis reveal how the optical field modifies the electronic properties of a solid through combined action of dipole excitation and field dressing.
机译:根据施加的强度,电子材料中的电磁场可以诱导特征酯或扭曲定义它们的库仑电位之间的偶极转变。在两个制度之间,当电子运动受到时间和空间周期性的潜在来说时,它们也可以以更细微的方式修改电子特性。光学场通过FLOQUET工程引入新的虚拟频带,其在共振条件下与预先存在的频段强烈相互作用。在这种情况下,虚拟频带可以变得真实,并且真实的乐谱变得虚拟,因为光场和电子频带分散体缠绕电子响应。通过从Cu(111)表面激发涉及从震撼表面带的三光子谐振转变到第一图像电位带,通过激发来自Cu(111)表面的四光子光曝光,揭示金属中的电子带的光学敷料。 Attosecond解决了相同泵探针脉冲之间的干涉扫描及其傅立叶分析揭示了光学场通过偶极激励和野外敷料的组合作用来改变光的电子性质。

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