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Lead halide perovskite based microdisk and microrod lasers

机译:基于卤化钙钛矿的微盘和微棒激光器

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Solution-processed lead halide perovskites have shown very bright future in both solar cells and microlasers. Very recently, the nonlinearity of perovskites started to attract considerable research attention. However, the perovskite nonlinear devices are still absent. Here we demonstrate the two-photon pumped nanolasers from perovskite nanowires. The CH3NH3PbBr3 perovskite nanowires were synthesized with one-step solution self-assembly method and dispersed on glass substrate. Under the optical excitation at 800 nm, two-photon pumped lasing actions with periodic peaks have been successfully observed at around 546 nm. The obtained quality (Q) factors of two-photon pumped nanolasers are around 960, and the corresponding thresholds are about 674 μJ/cm2. Both the Q factors and thresholds are comparable to conventional whispering gallery modes in two-dimensional polygon microplates. Our researches are the first demonstrations of two-photon pumped nanolasers in perovskite nanowires. We believe our finding will significantly expand the applications of perovskite in low-cost nonlinear optical devices such as optical limiting, optical switch, and biomedical imaging et al..
机译:溶液处理的卤化铅钙钛矿在太阳能电池和微激光器中都显示出非常光明的前景。最近,钙钛矿的非线性开始引起相当大的研究关注。但是,仍然没有钙钛矿非线性器件。在这里,我们演示了钙钛矿纳米线的双光子泵浦纳米激光。采用一步溶液自组装法合成了CH3NH3PbBr3钙钛矿纳米线,并分散在玻璃基板上。在800 nm处的光激发下,已经成功地在546 nm附近观察到了具有周期性峰值的双光子泵浦激光作用。获得的两光子泵浦纳米激光的质量(Q)因子约为960,相应的阈值约为674μJ/ cm2。 Q因子和阈值都可与二维多边形微板中的常规耳语画廊模式相媲美。我们的研究是钙钛矿纳米线中双光子泵浦纳米激光的首次演示。我们相信我们的发现将极大地扩展钙钛矿在低成本非线性光学设备中的应用,例如光学限制,光学开关和生物医学成像等。

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