Fully Directional Quantum-limited Phase-Preserving Amplifier

Fuente: arXiv
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Autori principali: Liu, Gangqiang, Lingenfelter, Andrew, Joshi, Vidul R., Frattini, Nicholas E., Sivak, Volodymyr V., Shankar, Shyam, Devoret, Michel H.
Natura: Preprint
Pubblicazione: 2023
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author Liu, Gangqiang
Lingenfelter, Andrew
Joshi, Vidul R.
Frattini, Nicholas E.
Sivak, Volodymyr V.
Shankar, Shyam
Devoret, Michel H.
author_facet Liu, Gangqiang
Lingenfelter, Andrew
Joshi, Vidul R.
Frattini, Nicholas E.
Sivak, Volodymyr V.
Shankar, Shyam
Devoret, Michel H.
contents We present a way to achieve fully directional, quantum-limited phase-preserving amplification in a four-port, four-mode superconducting Josephson circuit by utilizing interference between six parametric processes that couple all four modes. Full directionality, defined as the reverse isolation surpassing forward gain between the matched input and output ports of the amplifier, ensures its robustness against impedance mismatch that might be present at its output port during applications. Unlike existing directional phase-preserving amplifiers, both the minimal back-action and the quantum-limited added noise of this amplifier remains unaffected by noise incident on its output port. In addition, the matched input and output ports allow direct on-chip integration of these amplifiers with other circuit QED components, facilitating scaling up of superconducting quantum processors.
format Preprint
id arxiv_https___arxiv_org_abs_2305_04184
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Fully Directional Quantum-limited Phase-Preserving Amplifier
Liu, Gangqiang
Lingenfelter, Andrew
Joshi, Vidul R.
Frattini, Nicholas E.
Sivak, Volodymyr V.
Shankar, Shyam
Devoret, Michel H.
Quantum Physics
We present a way to achieve fully directional, quantum-limited phase-preserving amplification in a four-port, four-mode superconducting Josephson circuit by utilizing interference between six parametric processes that couple all four modes. Full directionality, defined as the reverse isolation surpassing forward gain between the matched input and output ports of the amplifier, ensures its robustness against impedance mismatch that might be present at its output port during applications. Unlike existing directional phase-preserving amplifiers, both the minimal back-action and the quantum-limited added noise of this amplifier remains unaffected by noise incident on its output port. In addition, the matched input and output ports allow direct on-chip integration of these amplifiers with other circuit QED components, facilitating scaling up of superconducting quantum processors.
title Fully Directional Quantum-limited Phase-Preserving Amplifier
topic Quantum Physics
url https://arxiv.org/abs/2305.04184