High yield and ultrafast sources of electrically triggered entangled-photon pairs based on strain-tunable quantum dots

Jiaxiang Zhang, Johannes Wildmann, F. Ding, Rinaldo Trotta, Yongheng Huo, Eugenio Zallo, Daniel Huber, Armando Rastelli, Oliver G. Schmidt

Research output: Contribution to journalArticlepeer-review

Abstract

Triggered sources of entangled photon pairs are key components in most quantum communication protocols. For practical quantum applications, electrical triggering would allow the realization of compact and deterministic sources of entangled photons. Entangled-light-emitting-diodes based on semiconductor quantum dots are among the most promising sources that can potentially address this task. However, entangled-light-emitting-diodes are plagued by a source of randomness, which results in a very low probability of finding quantum dots with sufficiently small fine structure splitting for entangled-photon generation (~10−2). Here we introduce strain-tunable entangled-light-emitting-diodes that exploit piezoelectric-induced strains to tune quantum dots for entangled-photon generation. We demonstrate that up to 30% of the quantum dots in strain-tunable entangled-light-emitting-diodes emit polarization-entangled photons. An entanglement fidelity as high as 0.83 is achieved with fast temporal post selection. Driven at high speed, that is 400 MHz, strain-tunable entangled-light-emitting-diodes emerge as promising devices for high data-rate quantum applications.
Original languageEnglish
Article number10067
Pages (from-to)10067
Number of pages7
Journalnature communications
Volume6
DOIs
Publication statusPublished - 2016

Fields of science

  • 103 Physics, Astronomy

JKU Focus areas

  • Nano-, Bio- and Polymer-Systems: From Structure to Function

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