Nanomechanical cat states generated by a dc voltage-driven Cooper pair box qubit
Journal article, 2022

We study a nanoelectromechanical system consisting of a Cooper pair box qubit performing nanomechanical vibrations between two bulk superconductors. We demonstrate that a bias voltage applied to the superconductors may generate states represented by entanglement between qubit states and quantum 'cat states', i.e. a superposition of the coherent states of the nanomechanical oscillator. We characterize the formation and development of such states in terms of the corresponding Wigner function and entropy of entanglement. Also, we propose an experimentally feasible detection scheme for the effect, in which the average current that attains the specific features created by the entanglement is measured.

Author

Danko Radic

University of Zagreb

Sang-Jun Choi

Institute for Basic Science - Korea (IBS)

University of Würzburg

Hee Chul Park

Institute for Basic Science - Korea (IBS)

Junho Suh

Korea Research Institute of Standards and Science (KRISS)

Robert I. Shekhter

University of Gothenburg

Leonid Gorelik

Chalmers, Physics

npj Quantum Information

20566387 (eISSN)

Vol. 8 1 74

Subject Categories

Other Physics Topics

Theoretical Chemistry

Condensed Matter Physics

DOI

10.1038/s41534-022-00584-6

More information

Latest update

1/3/2024 9