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首页> 外文期刊>ACS nano >Single Cesium Lead Halide Perovskite Nanocrystals at Low Temperature: Fast Single Photon Emission, Reduced Blinking, and Exciton Fine Structure
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Single Cesium Lead Halide Perovskite Nanocrystals at Low Temperature: Fast Single Photon Emission, Reduced Blinking, and Exciton Fine Structure

机译:低温下单铯卤化物钙钛矿纳米晶体:快速单光子发射,闪烁减少和激子精细结构

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摘要

Metal-halide semiconductors with perovskite crystal structure are attractive due to their facile solution processability, and have recently been harnessed very successfully for high-efficiency photovoltaics and bright light sources. Here, we show that at low temperature single colloidal cesium lead halide (CsPbX3, where X = Cl/Br) nanocrystals exhibit stable, narrow-band emission with suppressed blinking and small spectral diffusion. Photon antibunching demonstrates unambiguously nonclassical single-photon emission with radiative decay on the order of 250 ps, representing a significant acceleration compared to other common quantum emitters. High-resolution spectroscopy provides insight into the complex nature of the emission process such as the fine structure and charged exciton dynamics.
机译:具有钙钛矿晶体结构的金属卤化物半导体因其易加工的溶液可加工性而具有吸引力,并且最近已非常成功地用于高效光伏和明亮光源。在这里,我们表明,在低温下,单个胶体卤化铯铯(CsPbX3,其中X = Cl / Br)纳米晶体表现出稳定的窄带发射,具有抑制的闪烁和较小的光谱扩散。光子反聚束证明了具有250 ps数量级辐射衰减的非经典单光子发射,与其他常见的量子发射器相比,具有显着的加速度。高分辨率光谱学可洞悉发射过程的复杂性质,例如精细结构和带电激子动力学。

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