Visible-to-telecom quantum frequency conversion of light from a single quantum emitter

We demonstrate efficient (>30%) quantum frequency conversion of visible single photons (711 nm) emitted by a quantum dot to a telecom wavelength (1313 nm). Analysis of the first- and second-order coherence before and after wavelength conversion clearly proves that pivotal properties, such as the...

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Veröffentlicht in:Physical review letters 2012-10, Vol.109 (14), p.147404-147404
Hauptverfasser: Zaske, Sebastian, Lenhard, Andreas, Keßler, Christian A, Kettler, Jan, Hepp, Christian, Arend, Carsten, Albrecht, Roland, Schulz, Wolfgang-Michael, Jetter, Michael, Michler, Peter, Becher, Christoph
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Sprache:eng
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Zusammenfassung:We demonstrate efficient (>30%) quantum frequency conversion of visible single photons (711 nm) emitted by a quantum dot to a telecom wavelength (1313 nm). Analysis of the first- and second-order coherence before and after wavelength conversion clearly proves that pivotal properties, such as the coherence time and photon antibunching, are fully conserved during the frequency translation process. Our findings underline the great potential of single photon sources on demand in combination with quantum frequency conversion as a promising technique that may pave the way for a number of new applications in quantum technology.
ISSN:1079-7114
DOI:10.1103/PhysRevLett.109.147404