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Entanglement-based quantum key distribution with a blinking-free quantum dot operated at a temperature up to 20 K 被引量:2

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摘要 Entanglement-based quantum key distribution(QKD)promises enhanced robustness against eavesdropping and compatibility with future quantum networks.Among other sources,semiconductor quantum dots(QDs)can generate polarization-entangled photon pairs with near-unity entanglement fidelity and a multiphoton emission probability close to zero even at maximum brightness.These properties have been demonstrated under resonant two-photon excitation(TPE)and at operation temperatures below 10 K.However,source blinking is often reported under TPE conditions,limiting the maximum achievable photon rate.In addition,operation temperatures reachable with compact cryocoolers could facilitate the widespread deployment of QDs,e.g.,in satellite-based quantum communication.We demonstrate blinking-free emission of highly entangled photon pairs from GaAs QDs embedded in a p-i-n diode.High fidelity entanglement persists at temperatures of at least 20 K,which we use to implement fiber-based QKD between two buildings with an average raw key rate of 55 bits/s and a qubit error rate of 8.4%.We are confident that by combining electrical control with already demonstrated photonic and strain engineering,QDs will keep approaching the ideal source of entangled photons for real world applications.
出处 《Advanced Photonics》 EI CSCD 2021年第6期31-37,共7页 先进光子学(英文)
基金 financially supported by the Austrian Science Fund(FWF)via the Research Group FG5,P 29603,P 30459,I 4320,I 4380,I 3762 the European Union’s Horizon 2020 research and innovation program under Grant Agreements No.899814(Qurope)and No.871130(Ascent+) the Linz Institute of Technology(LIT),and the LIT Secure and Correct Systems Lab,supported by the State of Upper Austria.
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