arXiv · 2208.00024
Quantum-limited amplification without instability
Abstract
Quantum parametric amplifiers typically generate by operating in proximity to a point of dynamical instability. We consider an alternate general strategy where quantum-limited, large-gain amplification is achieved without any proximity to a dynamical instability. Our basic mechanism (involving dynamics that conserves the number of squeezed photons) enables the design of a variety of one and two mode amplifiers that are not limited by any fundamental gain-bandwidth constraint. We focus on a particular realization that allows us to realize an ideal single-mode squeezing operation in transmission, and which has zero reflection. We present both a thorough theoretical analysis of this system (including pump-depletion effects), and also discuss results of an experimental superconducting quantum circuit implementation.
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A. Metelmann, O. Lanes, T-Z. Chien, A. McDonald, I. Tsiamis, M. Hatridge, A. A. Clerk. 2022-07-29. Quantum-limited amplification without instability. https://arxiv.org/abs/2208.00024
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