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Generation of ultrashort (~10ps) spontaneous emission pulses by quantum dots in a switched optical microcavity

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arxiv 1910.10518 v1 pith:GVT5IRHL submitted 2019-10-23 cond-mat.mes-hall physics.opticsquant-ph

Generation of ultrashort (~10ps) spontaneous emission pulses by quantum dots in a switched optical microcavity

classification cond-mat.mes-hall physics.opticsquant-ph
keywords emissionfrequencymodeopticalpulsesquantumspontaneousdots
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We report on the generation of few-ps long spontaneous emission pulses by quantum dots (QDs) in a switched optical microcavity. We use a pulsed optical injection of free charge carriers to induce a large frequency shift of the fundamental mode of a GaAs/AlAs micropillar. We track in real time by time-resolved photoluminescence its fundamental mode during its relaxation, using the emission of the QD ensemble as a broadband internal light source. Sub-ensembles of QDs emitting at a given frequency, interact transiently with the mode and emit an ultrashort spontaneous emission pulse into it. By playing with switching parameters and with the emission frequency of the QDs, selected by spectral filtering, pulse durations ranging from 300 ps down to 6 ps have been obtained. These pulses display a very small coherence length, which opens potential applications in the field of ultrafast imaging. The control of QD-mode coupling on ps-time scales establishes also cavity switching as a key resource for quantum photonics.

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