English

Quantum interface for noble-gas spins based on spin-exchange collisions

Quantum Physics 2022-01-11 v3 Atomic Physics

Abstract

An ensemble of noble-gas nuclear spins is a unique quantum system that could maintain coherence for many hours at room temperature and above, owing to exceptional isolation from the environment. This isolation, however, is a mixed blessing, limiting the ability of these ensembles to interface with other quantum systems coherently. Here we show that spin-exchange collisions with alkali-metal atoms render a quantum interface for noble-gas spins without impeding their long coherence times. We formulate the many-body theory of the hybrid system and reveal a collective mechanism that strongly couples the macroscopic quantum states of the two spin ensembles. Despite their stochastic and random nature, weak collisions enable entanglement and reversible exchange of nonclassical excitations in an efficient, controllable, and deterministic process. With recent experiments now entering the strong-coupling regime, this interface paves the way towards realizing hour-long quantum memories and entanglement at room-temperature.

Keywords

Cite

@article{arxiv.1905.12532,
  title  = {Quantum interface for noble-gas spins based on spin-exchange collisions},
  author = {Or Katz and Roy Shaham and Ofer Firstenberg},
  journal= {arXiv preprint arXiv:1905.12532},
  year   = {2022}
}

Comments

O.K. and R.S. contributed equally

R2 v1 2026-06-23T09:31:51.398Z