article Open access

Holonomic quantum computation in the ultrastrong-coupling regime of circuit QED

  • Physical Review A
  • American Physical Society
Research footprint

At a glance

Citations
87
References
58
Comments
0
Paper overview

Abstract

We present an experimentally feasible scheme to implement holonomic quantum computation in the ultrastrong-coupling regime of light-matter interaction. The large anharmonicity and the ${\mathbb{Z}}_{2}$ symmetry of the quantum Rabi model allow us to build an effective three-level $\mathrm{\ensuremath{\Lambda}}$-structured artificial atom for quantum computation. The proposed physical implementation includes two gradiometric flux qubits and two microwave resonators where single-qubit gates are realized by a two-tone driving on one physical qubit, and a two-qubit gate is achieved with a time-dependent coupling between the field quadratures of both resonators. Our work paves the way for scalable holonomic quantum computation in ultrastrongly coupled systems.

Record transparency

Publication details

DOI
10.1103/physreva.94.012328
OpenAlex
W2403804592
Document type
article
Language
EN
Source
Physical Review A
Last metadata update
Community

Comments

Log in to join the discussion.

  1. No comments yet. Start the discussion.