Ultrabroadband ghost imaging exploiting optoelectronic amplified spontaneous emission and two-photon detection

Ghost imaging (GI) is one of the recent fascinating and probably counterintuitive topics of quantum optics. Here, we present an alternative classical GI scheme using spectrally ultrabroadband amplified spontaneous emission from an optoelectronic quantum dot based superluminescent diode source. This...

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Veröffentlicht in:Optics letters 2015-12, Vol.40 (24), p.5770-5773
Hauptverfasser: Hartmann, Sébastien, Molitor, Andreas, Elsäßer, Wolfgang
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Sprache:eng
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Zusammenfassung:Ghost imaging (GI) is one of the recent fascinating and probably counterintuitive topics of quantum optics. Here, we present an alternative classical GI scheme using spectrally ultrabroadband amplified spontaneous emission from an optoelectronic quantum dot based superluminescent diode source. This light source exhibits highly incoherent properties regarding both first- and second-order correlations with a 70 nm-wide optical spectrum as well as thermal-like photon statistics. Exploiting a two-photon-absorption detection method, we demonstrate for the first time, to the best of our knowledge, a GI experiment handling the corresponding femtosecond correlation timescales. By introducing compact broadband light sources to GI, this work contributes toward practical application of GI.
ISSN:0146-9592
1539-4794
DOI:10.1364/OL.40.005770