article Open access

Embedded quantum-error correction and controlled-phase gate for molecular spin qubits

  • AIP Advances
  • American Institute of Physics
Research footprint

At a glance

Citations
32
References
54
Comments
0
Paper overview

Abstract

A scalable architecture for quantum computing requires logical units supporting quantum-error correction. In this respect, magnetic molecules are particularly promising, since they allow one to define logical qubits with embedded quantum-error correction by exploiting multiple energy levels of a single molecule. The single-object nature of this encoding is expected to facilitate the implementation of error correction procedures and logical operations. In this work, we make progress in this direction by showing how two-qubit gates between error-protected units can be realised, by means of easily implementable sequences of electro-magnetic pulses.

Record transparency

Publication details

DOI
10.1063/9.0000166
OpenAlex
W3131724381
Document type
article
Language
EN
Source
AIP Advances
Last metadata update
Community

Comments

Log in to join the discussion.

  1. No comments yet. Start the discussion.