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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Floquet-Bloch state of bulk WSe$_2$ by time-resolved angle-resolved photoemission spectroscopy
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APS -APS March Meeting 2017 - Event - Floquet-Bloch state of bulk WSe$_2$ by time-resolved angle-resolved photoemission spectroscopy

机译:APS -APS 2017年3月会议-事件-时间分辨角度分辨光发射光谱法的Floquet-Bloch块态WSe $ _2 $状态

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Light-matter interaction in novel materials has attracted much attention recently. Pumped by a strong laser field, a non-equilibrium electronic state, Floquet-Bloch (FB) state may occur in crystals [1]. As an extension of photon dressed states in gas molecules to crystals, FB states show the same band dispersion of the ground state bands with energy spacings equal to integer multiples of the pump photon energy. In this study, the FB states of the valence bands near the K point of bulk 2H-phase WSe$_2$ are observed by time- and angle-resolved photoemission spectroscopy (TRARPES). The probe pulse is generated by high harmonic generation (28 eV) and the pump pulse is delivered by a femtosecond laser with a wavelength of 800 nm. The replica bands at E + h$u$ and E - h$u$ for the two topmost valence bands are observed within 120 fs, which reflects the cross correlation between the pump and probe pulses. Laser-assisted photoemission (LAPE) is another possible mechanism to generate replica bands in TRARPES. By changing the polarization of the pump pulse from p- to s-polarization, the contribution from LAPE decreases to zero; thus, the replica bands observed with s-polarization are pure FB state.[1] Wang, Y. H., Steinberg, H., Jarillo-Herrero, P. and Gedik, Science 342, 453 (2013)
机译:新型材料中的光-物质相互作用最近引起了很多关注。在强激光场的作用下,晶体中可能会出现非平衡电子状态Floquet-Bloch(FB)状态。作为气体分子中光子整平状态向晶体的扩展,FB状态显示了基态能带的相同能带色散,其能量间隔等于泵浦光子能量的整数倍。在这项研究中,通过时间和角度分辨光发射光谱法(TRARPES)观察了块状2H相WSe $ _2 $的K点附近的价带的FB状态。探测脉冲由高次谐波产生(28 eV)产生,泵浦脉冲由波长为800 nm的飞秒激光传递。在120 fs内观察到两个最高价带的E + h $ u $和E-h $ u $的复制带,反映了泵浦脉冲和探针脉冲之间的互相关。激光辅助光发射(LAPE)是在TRARPES中生成复制带的另一种可能的机制。通过将泵浦脉冲的极化从p极化更改为s极化,LAPE的贡献减小为零;因此,用s极化观察到的复制带是纯FB状态。[1] Wang,Y.H.,Steinberg,H.,Jarillo-Herrero,P.和Gedik,Science 342,453(2013)

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