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Quantum Teleportation with Telecom Photons from Remote Quantum Emitters

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arxiv 2411.12904 v1 pith:X3T2KYRB submitted 2024-11-19 quant-ph physics.optics

classification quant-phphysics.optics
keywords quantumnetworkteleportationlightsourcedotsscalablesemiconductor
verification ladder T0 review T1 audit T2 compute T3 formal
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The quest for a global quantum internet is based on the realization of a scalable network which requires quantum hardware with exceptional performance. Among them are quantum light sources providing deterministic, high brightness, high-fidelity entangled photons and quantum memories with coherence times in the millisecond range and above. To operate the network on a global scale, the quantum light source should emit at telecommunication wavelengths with minimum propagation losses. A cornerstone for the operation of such a quantum network is the demonstration of quantum teleportation. Here we realize full-photonic quantum teleportation employing one of the most promising platforms, i.e. semiconductor quantum dots, which can fulfill all the aforementioned requirements. Two remote quantum dots are used, one as a source of entangled photon pairs and the other as a single-photon source. The frequency mismatch between the triggered sources is erased using two polarization-preserving quantum frequency converters, enabling a Bell state measurement at telecommunication wavelengths. A post-selected teleportation fidelity of up to 0.721(33) is achieved, significantly above the classical limit, demonstrating successful quantum teleportation between light generated by distinct sources. These results mark a major advance for the semiconductor platform as a source of quantum light fulfilling a key requirement for a scalable quantum network. This becomes particularly relevant after the seminal breakthrough of addressing a nuclear spin in semiconductor quantum dots demonstrating long coherence times, thus fulfilling another crucial step towards a scalable quantum network.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Asymmetric two-photon response of an incoherently driven quantum emitter

    quant-ph 2025-07 conditional novelty 7.0 of 10

    In a phonon-assisted pumped quantum dot, the first of two photons emitted under one pulse is red-shifted, yielding the Rabi frequency and enabling spectral suppression of multiphoton noise.

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