论文标题

扭曲角度依赖的层间转移谷从激子到自由载体的山谷两极分化以WSE $ _2 $/MOSE $ _2 $ HETEROBILAYERS中的自由载体转移

Twist angle dependent interlayer transfer of valley polarization from excitons to free charge carriers in WSe$_2$/MoSe$_2$ heterobilayers

论文作者

Volmer, Frank, Ersfeld, Manfred, Junior, Paulo E. Faria, Waldecker, Lutz, Parashar, Bharti, Rathmann, Lars, Dubey, Sudipta, Cojocariu, Iulia, Feyer, Vitaliy, Watanabe, Kenji, Taniguchi, Takashi, Schneider, Claus M., Plucinski, Lukasz, Stampfer, Christoph, Fabian, Jaroslav, Beschoten, Bernd

论文摘要

我们确定一种光激励机制,该机制将山谷极化从光启用的电子孔对转移到扭曲的WSE $ _2 $/MOSE $ _2 $ HETEROBILAYERS中的免费电荷载体。对于小扭曲角度,尽管发生了层间激子,但它们的山谷寿命却令人惊讶地短,但它们可能具有长时间的重组和极化寿命。对于大扭转角,我们测量了山谷极化及其各自寿命的增加,将其量化超过两个数量级。有趣的是,在这样的异质分子中,我们观察到从WSE $ _2 $ layer层到Mose $ _2 $ layer中的山谷两极分化的层间转移。这种机制使摩西$ _2 $中的光诱导的自由电荷载体的山谷极化创建,该载量随栅极诱导的电荷载体密度而振幅尺度。这与单层Mose $ _2 $形成鲜明对比的是,在这种情况下,无法实现这种可敲门的山谷极化。通过将时间分辨的KERR旋转结合在一起,光照明和角度分辨光发射光谱测量与第一原理计算相结合,我们表明这些发现可以通过涉及Q-和$γ$ - valleys的扭曲角度依赖性依赖性角度依赖的间层间散射机制来解释。

We identify an optical excitation mechanism that transfers a valley polarization from photo-excited electron-hole pairs to free charge carriers in twisted WSe$_2$/MoSe$_2$ heterobilayers. For small twist angles, the valley lifetimes of the charge carriers are surprisingly short, despite the occurrence of interlayer excitons with their presumably long recombination and polarization lifetimes. For large twist angles, we measure an increase in both the valley polarization and its respective lifetime by more than two orders of magnitude. Interestingly, in such heterobilayers we observe an interlayer transfer of valley polarization from the WSe$_2$ layer into the MoSe$_2$ layer. This mechanism enables the creation of a photo-induced valley polarization of free charge carriers in MoSe$_2$, which amplitude scales with the gate-induced charge carrier density. This is in contrast to monolayer MoSe$_2$, where such a gate-tunable valley polarization cannot be achieved. By combining time-resolved Kerr rotation, photoluminesence and angle-resolved photoemission spectroscopy measurements with first principles calculations, we show that these findings can be explained by twist angle dependent interlayer scattering mechanisms involving the Q- and $Γ$-valleys.

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