English

Realization of reliable solid-state quantum memory for photonic polarization-qubit

Quantum Physics 2012-05-15 v3

Abstract

Faithfully storing an unknown quantum light state is essential to advanced quantum communication and distributed quantum computation applications. The required quantum memory must have high fidelity to improve the performance of a quantum network. Here we report the reversible transfer of photonic polarization states into collective atomic excitation in a compact solid-state device. The quantum memory is based on an atomic frequency comb (AFC) in rare-earth ion doped crystals. We obtain up to 0.998 process fidelity for the storage and retrieval process of single-photon-level coherent pulse. This reliable quantum memory is a crucial step toward quantum networks based on solid-state devices.

Keywords

Cite

@article{arxiv.1201.4441,
  title  = {Realization of reliable solid-state quantum memory for photonic polarization-qubit},
  author = {Zong-Quan Zhou and Wei-Bin Lin and Ming Yang and Chuan-Feng Li and Guang-Can Guo},
  journal= {arXiv preprint arXiv:1201.4441},
  year   = {2012}
}

Comments

Updated version of PRL paper, Bandwidth:100MHz, Efficiency: 20%@50ns

R2 v1 2026-06-21T20:07:51.227Z