Numerical analysis of a three-wave-mixing Josephson traveling-wave parametric amplifier with engineered dispersion loadings
arXiv:2209.11052 · doi:10.1063/5.0111111
Abstract
The recently proposed Josephson traveling-wave parametric amplifier (JTWPA) based on a ladder transmission line consisting of radio-frequency SQUIDs and exploiting three-wave mixing (3WM), has great potential in achieving both a gain of 20 dB and a flat bandwidth of at least 4 GHz. To realize this concept in practical amplifiers we model the advanced JTWPA circuit with periodic modulation of the circuit parameters (engineered dispersion loadings), which allow the basic mixing process, i.e., , where , , and are the signal, the pump, and the idler frequencies, respectively, and efficiently suppress propagation of unwanted higher tones including , , , etc. The engineered dispersion loadings allow achieving sufficiently wide dB-bandwidth from GHz to GHz combined with a reasonably small ripple ( dB) in the gain-versus-frequency dependence.
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Cited by in corpus (5)
- Vulnerability to Parameter Spread in Josephson Traveling-Wave Parametric Amplifiers
- An rf-SQUID-based traveling-wave parametric amplifier with -84 dBm input saturation power across more than one octave bandwidth
- Josephson traveling-wave parametric amplifier based on low-intrinsic-loss coplanar lumped-element waveguide
- Numerical simulations of Josephson Traveling Wave Parametric Amplifiers (JTWPAs): comparative study of open-source tools
- Strongly nonlinear regime of Josephson transmission lines revealed by two-tone spectroscopy