English

Demonstration of a passive photon-atom swap gate

Quantum Physics 2017-11-30 v1 Atomic Physics Optics

Abstract

Deterministic quantum interactions between single photons and single quantum emitters are a vital building block towards the distribution of quantum information between remote systems. Deterministic photon-atom state transfer has been demonstrated by using protocols that include active feedback or synchronized control pulses. Here we demonstrate a completely passive swap gate between the states of a single photon and a single atom. The underlying mechanism is single-photon Raman interaction (SPRINT) - an interference-based effect in which a photonic qubit deterministically controls the state of a material qubit encoded in the two ground states of a {\Lambda} system, and vice versa. Using a nanofiber-coupled microsphere resonator coupled to single Rb atoms we swap a photonic qubit into the atom and back, demonstrating nonclassical fidelities in both directions. Requiring no control fields or feedback protocol, the gate takes place automatically at the timescale of the atom's cavity- enhanced spontaneous emission time. Applicable to any waveguide-coupled {\Lambda} system, this scheme provides a versatile building block for the modular scaling up of quantum information processing systems.

Keywords

Cite

@article{arxiv.1711.10974,
  title  = {Demonstration of a passive photon-atom swap gate},
  author = {Orel Bechler and Adrien Borne and Serge Rosenblum and Gabriel Guendelman and Ori Ezrah Mor and Moran Netser and Tal Ohana and Ziv Aqua and Niv Drucker and Ran Finkelstein and Yulia Lovsky and Rachel Bruch and Doron Gurovich and Ehud Shafir and Barak Dayan},
  journal= {arXiv preprint arXiv:1711.10974},
  year   = {2017}
}

Comments

18 pages, 3 figures, 1 table