Ultracompact bottom-up photonic crystal lasers on silicon-on-insulator

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作者
Wook-Jae Lee
Hyunseok Kim
Jong-Bum You
Diana L. Huffaker
机构
[1] School of Engineering,
[2] Cardiff University,undefined
[3] Department of Electrical Engineering,undefined
[4] University of California Los Angeles,undefined
[5] Los Angeles,undefined
[6] Department of Electrical Engineering,undefined
[7] Korea Advanced Institute of Science and Technology,undefined
[8] School of Physics and Astronomy,undefined
[9] Cardiff University,undefined
[10] California Nano-Systems Institute,undefined
[11] University of California Los Angeles,undefined
[12] Los Angeles,undefined
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Compact on-chip light sources lie at the heart of practical nanophotonic devices since chip-scale photonic circuits have been regarded as the next generation computing tools. In this work, we demonstrate room-temperature lasing in 7 × 7 InGaAs/InGaP core-shell nanopillar array photonic crystals with an ultracompact footprint of 2300 × 2300 nm2, which are monolithically grown on silicon-on-insulator substrates. A strong lateral confinement is achieved by a photonic band-edge mode, which is leading to a strong light-matter interaction in the 7 × 7 nanopillar array, and by choosing an appropriate thickness of a silicon-on-insulator layer the band-edge mode can be trapped vertically in the nanopillars. The nanopillar array band-edge lasers exhibit single-mode operation, where the mode frequency is sensitive to the diameter of the nanopillars. Our demonstration represents an important first step towards developing practical and monolithic III-V photonic components on a silicon platform.
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