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首页> 外文期刊>Nature nanotechnology >Optical valley Hall effect for highly valley-coherent exciton-polaritons in an atomically thin semiconductor
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Optical valley Hall effect for highly valley-coherent exciton-polaritons in an atomically thin semiconductor

机译:光谷霍尔效果在原子薄半导体中的高度谷型激子 - 极性振荡器效果

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Spin-orbit coupling is a fundamental mechanism that connects the spin of a charge carrier with its momentum. In the optical domain, an analogous synthetic spin-orbit coupling is accessible by engineering optical anisotropies in photonic materials. Both yield the possibility of creating devices that directly harness spin and polarization as information carriers. Atomically thin transition metal dichalcogenides promise intrinsic spin-valley Hall features for free carriers, excitons and photons. Here we demonstrate spin- and valley-selective propagation of exciton-polaritons in a monolayer of MoSe2 that is strongly coupled to a microcavity photon mode. In a wire-like device we trace the flow and helicity of exciton-polaritons expanding along its channel. By exciting a coherent superposition of K and K' tagged polaritons, we observe valley-selective expansion of the polariton cloud without either an external magnetic field or coherent Rayleigh scattering. The observed optical valley Hall effect occurs on a macroscopic scale, offering the potential for applications in spin-valley-locked photonic devices.
机译:旋转轨道耦合是一种基本机制,将电荷载体的旋转与其动量连接。在光学域中,通过在光子材料中的工程光学各向异性访问类似的合成自旋轨道耦合。两者都产生了创建直接线束旋转和偏振作为信息载体的设备的可能性。原子薄的过渡金属二甲硅藻证明自由载体,激子和光子的内在旋转谷霍尔特征。在这里,我们展示了激子 - 极性官的旋转和谷选择性繁殖,其在模组中的单层与微腔光子模式牢固地耦合。在类似电线的装置中,我们追踪激子 - 极性子沿其通道扩展的流动和螺旋。通过激动K和K'标记的极性官的相干叠加,我们观察Pargeriton云的谷选择性膨胀,无论是外部磁场还是连贯的瑞利散射。观察到的光谷霍尔效应发生在宏观尺度上,提供旋转谷锁定光子器件中的应用的可能性。

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