Electric-Field-Induced Energy Tuning of On-Demand Entangled-Photon Emission from Self-Assembled Quantum Dots

We explore a method to achieve electrical control over the energy of on-demand entangled-photon emission from self-assembled quantum dots (QDs). The device used in our work consists of an electrically tunable diode-like membrane integrated onto a piezoactuator, which is capable of exerting a uniaxia...

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Veröffentlicht in:Nano letters 2017-01, Vol.17 (1), p.501-507
Hauptverfasser: Zhang, Jiaxiang, Zallo, Eugenio, Höfer, Bianca, Chen, Yan, Keil, Robert, Zopf, Michael, Böttner, Stefan, Ding, Fei, Schmidt, Oliver G
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Sprache:eng
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Zusammenfassung:We explore a method to achieve electrical control over the energy of on-demand entangled-photon emission from self-assembled quantum dots (QDs). The device used in our work consists of an electrically tunable diode-like membrane integrated onto a piezoactuator, which is capable of exerting a uniaxial stress on QDs. We theoretically reveal that, through application of the quantum-confined Stark effect to QDs by a vertical electric field, the critical uniaxial stress used to eliminate the fine structure splitting of QDs can be linearly tuned. This feature allows experimental realization of a triggered source of energy-tunable entangled-photon emission. Our demonstration represents an important step toward realization of a solid-state quantum repeater using indistinguishable entangled photons in Bell state measurements.
ISSN:1530-6984
1530-6992
DOI:10.1021/acs.nanolett.6b04539