Low-noise Optomechanical Single Phonon-photon Conversion for Quantum Networks

Fuente: arXiv
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Main Authors: Chen, Liu, Korsch, Alexander Rolf, Kersul, Cauê Moreno, Benevides, Rodrigo, Yu, Yong, Alegre, Thiago P. Mayer, Gröblacher, Simon
Format: Preprint
Published: 2024
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author Chen, Liu
Korsch, Alexander Rolf
Kersul, Cauê Moreno
Benevides, Rodrigo
Yu, Yong
Alegre, Thiago P. Mayer
Gröblacher, Simon
author_facet Chen, Liu
Korsch, Alexander Rolf
Kersul, Cauê Moreno
Benevides, Rodrigo
Yu, Yong
Alegre, Thiago P. Mayer
Gröblacher, Simon
contents Nano-structured optomechanical crystals (OMC) form an interface between mechanical modes with long coherence times and telecom optical photons, ideal for long-distance distribution of quantum information. However, the implementation of scalable quantum networks based on OMCs has been inhibited by thermal mechanical noise. Here, we overcome this limitation using a quasi-two-dimensional OMC and generate single photons via single phonon-photon conversion. In this work, we verify the low thermal noise and high purity of the generated single photons through a Hanbury Brown-Twiss experiment with $g^{(2)}(0)=0.35^{+0.10}_{-0.08}$. We perform Hong-Ou-Mandel interference of the emitted photons showcasing the indistinguishability and coherence with visibility $V=0.52 \pm 0.15$ after 1.43 km fiber delay. Lastly, we use two-photon interference to measure the temporal wavepackets of optomechanically generated single photons demonstrating narrow bandwidths as low as 10 MHz. Our results pave the way for multinode quantum networks of mechanical oscillators and hybrid entanglement generation between mechanical oscillators and telecom quantum emitters.
format Preprint
id arxiv_https___arxiv_org_abs_2410_10947
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Low-noise Optomechanical Single Phonon-photon Conversion for Quantum Networks
Chen, Liu
Korsch, Alexander Rolf
Kersul, Cauê Moreno
Benevides, Rodrigo
Yu, Yong
Alegre, Thiago P. Mayer
Gröblacher, Simon
Quantum Physics
Optics
Nano-structured optomechanical crystals (OMC) form an interface between mechanical modes with long coherence times and telecom optical photons, ideal for long-distance distribution of quantum information. However, the implementation of scalable quantum networks based on OMCs has been inhibited by thermal mechanical noise. Here, we overcome this limitation using a quasi-two-dimensional OMC and generate single photons via single phonon-photon conversion. In this work, we verify the low thermal noise and high purity of the generated single photons through a Hanbury Brown-Twiss experiment with $g^{(2)}(0)=0.35^{+0.10}_{-0.08}$. We perform Hong-Ou-Mandel interference of the emitted photons showcasing the indistinguishability and coherence with visibility $V=0.52 \pm 0.15$ after 1.43 km fiber delay. Lastly, we use two-photon interference to measure the temporal wavepackets of optomechanically generated single photons demonstrating narrow bandwidths as low as 10 MHz. Our results pave the way for multinode quantum networks of mechanical oscillators and hybrid entanglement generation between mechanical oscillators and telecom quantum emitters.
title Low-noise Optomechanical Single Phonon-photon Conversion for Quantum Networks
topic Quantum Physics
Optics
url https://arxiv.org/abs/2410.10947