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Cavity-enhanced photonic crystal light-emitting diode at 1300 nm

โœ Scribed by Marco Francardi; Annamaria Gerardino; Laurent Balet; Nicolas Chauvin; David Bitauld; Lianhe Li; Blandine Alloing; Andrea Fiore


Publisher
Elsevier Science
Year
2009
Tongue
English
Weight
383 KB
Volume
86
Category
Article
ISSN
0167-9317

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โœฆ Synopsis


We report direct evidence of enhanced spontaneous emission in a photonic crystal light-emitting diode (LED) at telecom wavelength (k $ 1300 nm). This result is crucial to obtain an electrically driven single photon source with high extraction efficiency. This kind of devices can be used for different types of applications in emerging fields like quantum key distribution, quantum information technology as well as in fundamental studies on quantum electrodynamics. In this work we present a device which combines a photonic crystal nanocavity with InAs quantum dots (QDs) and an LED, leading to cavityenhanced emission at telecom wavelengths under electrical injection. The fabrication process, based on e-beam lithography and additive and subtractive processes, is described in detail. A well-isolated emission peak at about 1300 nm from the PhC mode electrically pumped is obtained (Q $ 4000), and the enhancement of the spontaneous emission rate ($1.5 fold) is clearly evidenced by time-resolved electroluminescence measurements.


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