An rf-SQUID-based traveling-wave parametric amplifier with -84 dBm input saturation power across more than one octave bandwidth
arXiv:2503.02489 · doi:10.1103/1qk4-fzkq
Abstract
Traveling-wave parametric amplifiers (TWPAs) have become an essential tool for the readout of quantum circuits and the search for dark matter. We report on the implementation of an rf-SQUID-based Josephson TWPA with an average saturation power of -84 dBm, while providing an average power gain of 20 dB from 3.5 to 8.5 GHz. This wide bandwidth is enabled by reducing the curvature of the dispersion in the signal band while suppressing detrimental mixing processes. With 2393 rf-SQUIDs our device has a comparable number of nonlinear elements, but achieves ten times higher saturation power than previous works, showing that using rf-SQUIDs results in a more favorable trade-off between device length and saturation power. Harnessing wideband characterization techniques we determine the TWPA's excess noise above the quantum limit to be 0.8 to 1.5 photons. In addition, we validate signal-to-noise ratio improvement as a practical measure for tuning the TWPA to minimize the total system noise, and demonstrate that its optimum does not coincide with the highest gain.
References in corpus (15)
- Observation of quantum jumps in a superconducting artificial atom
- A widely tunable parametric amplifier based on a SQUID array resonator
- First results from a microwave cavity axion search at 24 micro-eV
- Microwave Dielectric Loss at Single Photon Energies and milliKelvin Temperatures
- Resonantly phase-matched Josephson junction traveling wave parametric amplifier
- Quantum limited amplification and entanglement in coupled nonlinear resonators
- Perspective on traveling wave microwave parametric amplifiers
- Wide-band Parametric Amplifier Readout and Resolution of Optical Microwave Kinetic Inductance Detectors
- Four wave-mixing in a microstrip kinetic inductance travelling wave parametric amplifier
- Numerical analysis of a three-wave-mixing Josephson traveling-wave parametric amplifier with engineered dispersion loadings
- Vulnerability to Parameter Spread in Josephson Traveling-Wave Parametric Amplifiers
- Improved microwave SQUID multiplexer readout using a kinetic-inductance traveling-wave parametric amplifier
- Superconducting microwave resonators with non-centrosymmetric nonlinearity
- Characterization of the low electric field and zero-temperature two-level-system loss in hydrogenated amorphous silicon
- Measurable Improvement in Multi-Qubit Readout Using a Kinetic Inductance Traveling Wave Parametric Amplifier
Cited by in corpus (3)
- Strongly nonlinear regime of Josephson transmission lines revealed by two-tone spectroscopy
- Magnetic-Field and Temperature Limits of a Kinetic-Inductance Traveling-Wave Parametric Amplifier
- Nondegenerate Josephson Mixers with Enhanced Bandwidth and Saturation Power for Quantum Signal Amplification and Transduction