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首页> 外文期刊>Physical review letters >Zeeman Splitting and Inverted Polarization of Biexciton Emission in Monolayer WS_2
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Zeeman Splitting and Inverted Polarization of Biexciton Emission in Monolayer WS_2

机译:单层WS_2中双激子发射的塞曼分裂和反向极化

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摘要

Atomically thin semiconductors provide an ideal testbed to investigate the physics of Coulomb-bound many-body states. We shed light on the intricate structure of such complexes by studying the magnetic-field-induced splitting of biexcitons in monolayer WS2 using polarization-resolved photoluminescence spectroscopy in out-of-plane magnetic fields up to 30 T. The observed g factor of the biexciton amounts to about -3.9, closely matching the g factor of the neutral exciton. The biexciton emission shows an inverted circular field-induced polarization upon linearly polarized excitation; i.e., it exhibits preferential emission from the high-energy peak in a magnetic field. This phenomenon is explained by taking into account the hybrid configuration of the biexciton constituents in momentum space and their respective energetic behavior in magnetic fields. Our findings reveal the critical role of dark excitons in the composition of this many-body state.
机译:原子薄半导体为研究与库仑结合的多体态的物理学提供了理想的测试平台。通过在高达30 T的面外磁场中使用极化分辨光致发光光谱法研究磁场诱导的单层WS2中双激子的分裂,我们弄清了此类复合物的复杂结构。观察到的双激子的g因子大约为-3.9,与中性激子的g因子非常匹配。双激子发射在线性极化激发下显示出倒圆磁场感应的极化。即,它从磁场中的高能峰表现出优先发射。通过考虑动量空间中双激子成分的混合构型及其在磁场中的各自能量行为来解释这种现象。我们的发现揭示了暗激子在这种多体状态组成中的关键作用。

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