Published November 7, 2022 | Version v1
Journal article Open

Generalized matching condition for unity efficiency quantum transduction

  • 1. University of Chicago

Description

Coherently converting quantum states between distinct elements via quantum transducers remains a crucial yet challenging task in quantum science. Especially in demand is quantum transduction between optical frequencies, which are ideal for low-loss transmission across long distances, and microwave frequencies, which admit high-fidelity quantum operations. We present a generic formalism for N -stage quantum transduction that covers various leading microwave-to-optical, microwave-to-microwave, and optical-to-optical linear conversion approaches. We then identify effective circuit models and the resulting generalized matching conditions for achieving maximum conversion efficiency. The generalized matching condition requires resistance matching as well as frequency matching beyond the usual resonant assumption, with a simple impedance-matched transmission interpretation. Our formalism provides a generic toolbox for determining experimental parameters to realize efficient quantum transduction and suggests different regimes of nonresonant conversions that might outperform all-resonant ones.

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PhysRevResearch.4.L042023.pdf

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Additional details

Identifiers

DOI
10.1103/physrevresearch.4.l042023
Other
oai:uchicago.tind.io:11697

Funding

National Science Foundation
OMA-2137642
National Science Foundation
EEC-1941583
National Science Foundation
OMA-1936118
David and Lucile Packard Foundation
Air Force Office of Scientific Research
FA9550-19-1-0399
Air Force Office of Scientific Research
FA9550-21-1-0209
Army Research Office
W911NF-16-1-0349
Army Research Office
W911NF-21-1-0325
Army Research Office
W911NF-18-1-0020
Army Research Office
W911NF-18-1-0212
Air Force Research Laboratory
FA8649-21-P-0781

UChicago Information

Division(s)
Pritzker School of Molecular Engineering