Saved in:
Bibliographic Details
Main Authors: An, Yu-Yang, He, Qian, Xue, Wenyi, Jiang, Ming-Hao, Yang, Chengdong, Lu, Yan-Qing, Zhu, Shining, Ma, Xiao-Song
Format: Preprint
Published: 2025
Subjects:
Online Access:https://arxiv.org/abs/2505.05233
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866916728009654272
author An, Yu-Yang
He, Qian
Xue, Wenyi
Jiang, Ming-Hao
Yang, Chengdong
Lu, Yan-Qing
Zhu, Shining
Ma, Xiao-Song
author_facet An, Yu-Yang
He, Qian
Xue, Wenyi
Jiang, Ming-Hao
Yang, Chengdong
Lu, Yan-Qing
Zhu, Shining
Ma, Xiao-Song
contents To realize a quantum internet, the distribution of quantum states via quantum teleportation with quantum memories is a key ingredient. Being compatible with existing fiber networks, entangled photons and quantum memories at telecom-wavelength are of central interest for such a scalable quantum network. Here, we demonstrate quantum teleportation from a telecom-wavelength photonic qubit to a solid-state quantum memory based on erbium-ion ensembles, which have a native optical transition at 1.5 $μ$m telecom C-band. To accomplish this, we use chip-scale silicon nitride micro-resonators to generate entangled photons with narrow linewidth, compatible with the quantum memory. We confirm the quality of the quantum teleportation procedure using quantum state and process tomography techniques, in which both the quantum state and process fidelities exceeds the classical limit. These results pave the way for the realization of scalable quantum networks based on solid-state devices.
format Preprint
id arxiv_https___arxiv_org_abs_2505_05233
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Quantum Teleportation from Telecom Photons to Erbium-ion Ensembles
An, Yu-Yang
He, Qian
Xue, Wenyi
Jiang, Ming-Hao
Yang, Chengdong
Lu, Yan-Qing
Zhu, Shining
Ma, Xiao-Song
Quantum Physics
To realize a quantum internet, the distribution of quantum states via quantum teleportation with quantum memories is a key ingredient. Being compatible with existing fiber networks, entangled photons and quantum memories at telecom-wavelength are of central interest for such a scalable quantum network. Here, we demonstrate quantum teleportation from a telecom-wavelength photonic qubit to a solid-state quantum memory based on erbium-ion ensembles, which have a native optical transition at 1.5 $μ$m telecom C-band. To accomplish this, we use chip-scale silicon nitride micro-resonators to generate entangled photons with narrow linewidth, compatible with the quantum memory. We confirm the quality of the quantum teleportation procedure using quantum state and process tomography techniques, in which both the quantum state and process fidelities exceeds the classical limit. These results pave the way for the realization of scalable quantum networks based on solid-state devices.
title Quantum Teleportation from Telecom Photons to Erbium-ion Ensembles
topic Quantum Physics
url https://arxiv.org/abs/2505.05233