Harnessing two-photon dissipation for enhanced quantum measurement and control
Abstract
Dissipation engineering offers a powerful tool for quantum technologies. Recently, new superconducting devices have achieved an engineered two-photon dissipation rate exceeding all other relevant timescales. In particular, they have proven most useful in preventing transitions between the logical states of a cat qubit. Here, we present three key applications of strong two-photon dissipation for quantum measurement and control, beyond cat qubit stabilization. Firstly, we demonstrate its efficacy in overcoming limitations encountered in Wigner tomography at high photon numbers. Secondly, we showcase its potential for realizing universal gates on cat qubits, exploiting the coherent mapping between cat qubit states and superpositions of 0 and 1 photons. Finally, we harness the transient dynamics of a cat state under two-photon dissipation to prepare squeezed cat states with a squeezing factor exceeding 3.960.07 dB.
Cite
@article{arxiv.2403.07744,
title = {Harnessing two-photon dissipation for enhanced quantum measurement and control},
author = {Antoine Marquet and Simon Dupouy and Ulysse Réglade and Antoine Essig and Joachim Cohen and Emanuele Albertinale and Audrey Bienfait and Théau Peronnin and Sébastien Jezouin and Raphaël Lescanne and Benjamin Huard},
journal= {arXiv preprint arXiv:2403.07744},
year = {2024}
}
Comments
Three videos can be downloaded as ancillary files