论文标题

栅极可调激子 - 波隆Rydberg系列具有强旋顿效应

Gate-tunable exciton-polaron Rydberg series with strong roton effect

论文作者

Liu, Erfu, van Baren, Jeremiah, Lu, Zhengguang, Taniguchi, Takashi, Watanabe, Kenji, Smirnov, Dmitry, Chang, Yia-Chung, Lui, Chun Hung

论文摘要

电子激子极化子是一种假设的多体式准颗粒,由exciton在费米海(Fermi Sea)(FS)中穿着极化的电子孔云形成。预计将显示丰富的多体物理学和异常的类似旋转的色散。最近唤起了激子极性子,以解释掺杂单层金属二核苷(TMDS)的激发光谱,但这些研究仅限于基态。激发态激元的极地由于其较大的空间范围而表现出更丰富的多体物理学,但是由于其固有的信号固有的弱信号,检测是具有挑战性的。在这里,我们观察到超精美单层Mose Mose $ _2 $设备的1s -3s激子Rydberg系列的栅极可调激子极性。当FS膨胀时,我们观察到越来越严重的抑制作用和从低rydberg状态的陡峭能量转移。他们与门相关的能量转移超出了Trion的描述,但与我们的激子 - 核心理论相匹配。值得注意的是,激子的吸收和发射带的能量间隙分离,从地面到激发状态。这种特殊的特征归因于旋转的激子 - 波隆分散剂,其中能量最小值发生在有限的动量。 Roton效应从地面到激发态增加。具有逐渐具有重要多体和Roton效应的激子 - 帕伦·瑞德伯格(Polaron Rydberg)系列应为探索复杂的多体现象提供一个新的平台。

The electronic exciton polaron is a hypothetical many-body quasiparticle formed by an exciton dressed with a polarized electron-hole cloud in the Fermi sea (FS). It is predicted to display rich many-body physics and unusual roton-like dispersion. Exciton polarons were recently evoked to explain the excitonic spectra of doped monolayer transition metal dichalcogenides (TMDs), but these studies are limited to the ground state. Excited-state exciton polarons can exhibit richer many-body physics due to their larger spatial extent, but detection is challenging due to their inherently weak signals. Here we observe gate-tunable exciton polarons for the 1s - 3s excitonic Rydberg series in ultraclean monolayer MoSe$_2$ devices by optical spectroscopy. When the FS expands, we observe increasingly severe suppression and steep energy shift from low to high Rydberg states. Their gate-dependent energy shifts go beyond the trion description but match our exciton-polaron theory. Notably, the exciton-polaron absorption and emission bands are separated with an energy gap, which increases from ground to excited state. Such peculiar characteristics are attributed to the roton-like exciton-polaron dispersion, where energy minima occur at finite momenta. The roton effect increases from ground to excited state. Such exciton-polaron Rydberg series with progressively significant many-body and roton effect shall provide a new platform to explore complex many-body phenomena.

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