Large gain quantum-limited qubit measurement using a two-mode nonlinear cavity
Abstract
We provide a thorough theoretical analysis of qubit state measurement in a setup where a driven, parametrically-coupled cavity system is directly coupled to the qubit, with one of the cavities having a weak Kerr nonlinearity. Such a system could be readily realized using circuit QED architectures. We demonstrate that this setup is capable in the standard linear-response regime of both producing a highly amplified output signal while at the same time achieving near quantum-limited performance: the measurement backaction on the qubit is near the minimal amount required by the uncertainty principle. This setup thus represents a promising route for performing efficient large-gain qubit measurement that is completely on-chip, and that does not rely on the use of circulators or complex non-reciprocal amplifiers.
Cite
@article{arxiv.1408.0226,
title = {Large gain quantum-limited qubit measurement using a two-mode nonlinear cavity},
author = {Saeed Khan and R. Vijay and I. Siddiqi and Aashish A. Clerk},
journal= {arXiv preprint arXiv:1408.0226},
year = {2014}
}
Comments
20 pages, 8 figures