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  • Kern, S.Univerzita Komenskeho v Bratislave,Comenius University in Bratislava (author)

Reflection-enhanced gain in traveling-wave parametric amplifiers

  • Article/chapterEnglish2023

Publisher, publication year, extent ...

  • 2023
  • electronicrdacarrier

Numbers

  • LIBRIS-ID:oai:research.chalmers.se:9b326aa3-cc5a-4e82-8aa1-9148f557be29
  • https://research.chalmers.se/publication/536229URI
  • https://doi.org/10.1103/PhysRevB.107.174520DOI

Supplementary language notes

  • Language:English
  • Summary in:English

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Classification

  • Subject category:art swepub-publicationtype
  • Subject category:ref swepub-contenttype

Notes

  • The operating principle of traveling-wave parametric amplifiers is typically understood in terms of the standard coupled mode theory, which describes the evolution of forward propagating waves without any reflections, i.e., for perfect impedance matching. However, in practice, superconducting microwave amplifiers are unmatched nonlinear finite-length devices, where the reflecting waves undergo complex parametric processes, not described by the standard coupled mode theory. Here, we present an analytical solution for the TWPA gain, which includes the interaction of reflected waves. These reflections result in corrections to the well-known results of the standard coupled mode theory, which are obtained for both three-wave and four-wave mixing processes. Due to these reflections, the gain is enhanced and unwanted nonlinear phase modulations are suppressed. Predictions of the model are experimentally demonstrated on two types of unmatched TWPA, based on coplanar waveguides with a central wire consisting of (i) a high kinetic inductance superconductor, and (ii) an array of 2000 Josephson junctions.

Subject headings and genre

Added entries (persons, corporate bodies, meetings, titles ...)

  • Neilinger, P.Univerzita Komenskeho v Bratislave,Comenius University in Bratislava,Slovak Academy of Sciences (author)
  • Il'Ichev, E.Leibniz-Institut Für Photonische Technologien E.V. (author)
  • Sultanov, A.Aalto-Yliopisto,Aalto University (author)
  • Schmelz, M.Leibniz-Institut Für Photonische Technologien E.V. (author)
  • Linzen, S.Leibniz-Institut Für Photonische Technologien E.V. (author)
  • Kunert, J.Leibniz-Institut Für Photonische Technologien E.V. (author)
  • Oelsner, G.Leibniz-Institut Für Photonische Technologien E.V. (author)
  • Stolz, R.Leibniz-Institut Für Photonische Technologien E.V. (author)
  • Danilov, Andrey,1961Chalmers tekniska högskola,Chalmers University of Technology(Swepub:cth)danilov (author)
  • Mahashabde, Sumedh,1985Chalmers tekniska högskola,Chalmers University of Technology(Swepub:cth)sumedh (author)
  • Jayaraman, Aditya,1993Chalmers tekniska högskola,Chalmers University of Technology(Swepub:cth)adityaja (author)
  • Antonov, V.Royal Holloway University of London (author)
  • Kubatkin, Sergey,1959Chalmers tekniska högskola,Chalmers University of Technology(Swepub:cth)kubatkin (author)
  • Grajcar, M.Slovak Academy of Sciences,Univerzita Komenskeho v Bratislave,Comenius University in Bratislava (author)
  • Univerzita Komenskeho v BratislaveSlovak Academy of Sciences (creator_code:org_t)

Related titles

  • In:Physical Review B107:172469-99692469-9950

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