论文标题

在单层半导体中自我诱导的山谷玻色子刺激

Self-Induced Valley Bosonic Stimulation of Exciton-Polaritons in a Monolayer Semiconductor

论文作者

Cilibrizzi, Pasquale, Liu, Xiaoze, Zhang, Peiyao, Wang, Chenzhe, Li, Quanwei, Yang, Sui, Zhang, Xiang

论文摘要

新发现的原子较薄的二维过渡金属二北元(TMD)的自由度提供了一个有前途的平台,可探索丰富的非线性物理学,例如纺纱玻璃物Bose-Einstein冷凝物(BEC)和新型的ValleyTronics应用。然而,由于产生有限的极性基态密度,诱导北极星在特定山谷中刺激的散射所需的有限的极性基态密度,因此临界非线性效应(例如山谷北极星骨刺激)长期以来一直是尚未解决的挑战。在这里,我们报告了通过WS2单层微腔中的自旋谷锁定对激子 - 孔子的自我触发刺激。这是通过在特定能量和波形处谐振山谷极化子的共振注射来实现的,这使自旋极化极性子可以有效地填充其基态并诱导谷数依赖性的骨值刺激。结果,我们观察到从山谷依赖性基态发射极化的非线性自我放大。我们的发现为调查TMD Polariton Bec中的旋转顺序和相变的方式铺平了道路,为在MoiréPolaritonSystems和Spin-Lasers中实现Polariton Spin Lattices提供了有希望的途径。

The newly discovered valley degree of freedom in atomically thin two-dimensional transition metal dichalcogenides (TMD) offers a promising platform to explore rich nonlinear physics, such as spinor Bose-Einstein condensate (BEC) and novel valleytronics applications. However, the critical nonlinear effect, such as valley polariton bosonic stimulation, has long remained an unresolved challenge due to the generation of limited polariton ground state densities necessary to induce the stimulated scattering of polaritons in specific valleys. Here, we report the self-induced valley bosonic stimulation of exciton-polaritons via spin-valley locking in a WS2 monolayer microcavity. This is achieved by the resonant injection of valley polaritons at specific energy and wavevector, which allows spin-polarized polaritons to efficiently populate their ground state and induce a valley-dependent bosonic stimulation. As a result, we observe the nonlinear self-amplification of polariton emission from the valley-dependent ground state. Our finding paves the way for the investigation of spin ordering and phase transitions in TMD polariton BEC, offering a promising route for the realization of polariton spin lattices in moiré polariton systems and spin-lasers.

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