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A room-temperature polariton light-emitting diode based on monolayer WS2

机译:基于单层WS2的室温偏振片发光二极管

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Exciton polaritons that arise through the strong coupling of excitons and cavity photons are used to demonstrate a wide array of fundamental phenomena and potential applications that range from Bose-Einstein-like condensation(1-3) to analogue Hamiltonian simulators(4,5) and chip-scale interferometers(6). Recently, the two-dimensional (2D) transition metal dichalcogenides (TMDs), because of their large exciton binding energies, oscillator strength and valley degree of freedom, have emerged as a very attractive platform to realize exciton polaritons at elevated temperatures(7). Achieving the electrical injection of polaritons is attractive both as a precursor to realizing electrically driven polariton lasers as well as for high speed light-emitting diodes (LEDs) for communication systems. Here, we demonstrate an electrically driven polariton LED that operates at room temperature using monolayer tungsten disulfide (WS2) as the emissive material. The extracted external quantum efficiency is similar to 0.1% and is comparable to recent demonstrations of bulk organic(8) and carbon nanotube-based polariton electroluminescence (EL) devices(9). The possibility to realize electrically driven polariton LEDs in atomically thin semiconductors at room temperature presents a promising step towards achieving an inversionless electrically driven laser in these systems as well as for ultrafast microcavity LEDs using van der Waals (vdW) materials.
机译:通过强大的激子和腔光光子产生的激子极性官,用于展示广泛的基本现象和潜在的应用,其范围从Bose-Einstein凝结(1-3)到模拟Hamiltonian模拟器(4,5)和芯片级干涉仪(6)。最近,二维(2D)过渡金属二均磷脂(TMDS),因为它们大的激子结合能量,振荡器强度和自由度的谷程度,已经成为一个非常有吸引力的平台,以在升高的温度(7)处实现激子极性官。实现光学的电气注射是具有用于实现电驱动的极性激光器以及用于通信系统的高速发光二极管(LED)的前体具有吸引力。这里,我们展示了一种电动的极性恒阳极LED,其在室温下使用单层钨二硫化物(WS2)作为发光材料在室温下操作。提取的外部量子效率类似于0.1%,与最近的批量有机(8)和基于碳纳米管的极性电致发光(EL)器件(EL)器件(9)相当。在室温下以原子薄的半导体实现电动的极性恒电LED的可能性呈现了朝向在这些系统中实现无流量的电驱动激光器的有望的步骤以及使用VAN DAR WAALS(VDW)材料的超快微腔LED。

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