English

Mapping multiple photonic qubits into and out of one solid-state atomic ensemble

Quantum Physics 2015-05-18 v1

Abstract

The future challenge of quantum communication are scalable quantum networks, which require coherent and reversible mapping of photonic qubits onto stationary atomic systems (quantum memories). A crucial requirement for realistic networks is the ability to efficiently store multiple qubits in one quantum memory. Here we demonstrate coherent and reversible mapping of 64 optical modes at the single photon level in the time domain onto one solid-state ensemble of rare-earth ions. Our light-matter interface is based on a high-bandwidth (100 MHz) atomic frequency comb, with a pre-determined storage time of 1 microseconds. We can then encode many qubits in short <10 ns temporal modes (time-bin qubits). We show the good coherence of the mapping by simultaneously storing and analyzing multiple time-bin qubits.

Keywords

Cite

@article{arxiv.1002.3782,
  title  = {Mapping multiple photonic qubits into and out of one solid-state atomic ensemble},
  author = {Imam Usmani and Mikael Afzelius and Hugues de Riedmatten and Nicolas Gisin},
  journal= {arXiv preprint arXiv:1002.3782},
  year   = {2015}
}

Comments

7 pages, 6 figures + Supplementary material

R2 v1 2026-06-21T14:49:02.212Z