Near-quantum-limited subgigahertz TiN kinetic inductance traveling-wave parametric amplifier operating in a frequency-translating mode
Creators
Abstract
We present the design and experimental characterization of a kinetic inductance traveling-wave parametric amplifier (KI-TWPA) for subgigahertz frequencies. KI-TWPAs amplify signals through mixing processes supported by the nonlinear kinetic inductance of a superconducting transmission line. The device described here uses a compactly meandered TiN microstrip transmission line to achieve the length needed to amplify subgigahertz signals. It is operated in a frequency-translating mode where the amplified signal tone is terminated at the output of the amplifier, and the idler tone at approximately 2.5 GHz is brought out of the cryostat. By varying the pump frequency, a gain of up to 22 dB was achieved in a tunable range from about 450 to 850 MHz. Using TiN as the nonlinear element allows for a reduction of the required pump power by roughly an order of magnitude relative to NbTiN, which has been used for previous KI-TWPA implementations. This amplifier has the potential to enable high-sensitivity and high-speed measurements in a wide range of applications, such as quantum computing, astrophysics, and dark matter detection.
Copyright and License
© 2025 American Physical Society.
Acknowledgement
F.F’s research was supported by appointment to the NASA Postdoctoral Program at the Jet Propulsion Laboratory, administered by Oak Ridge Associated Universities under contract with NASA. This research was carried out at the Jet Propulsion Laboratory under a contract with the National Aeronautics and Space Administration (80NM0018D0004). We thank R. O’Brient and A. Wandui for their support with the rf measurements.
Files
PhysRevApplied.23.024063.pdf
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Additional details
Additional titles
- Alternative title
- A Near Quantum Limited Sub-GHz TiN Kinetic Inductance Traveling Wave Parametric Amplifier Operating in a Frequency Translating Mode
Related works
- Is new version of
- Discussion Paper: arXiv:2406.00530 (arXiv)
Funding
- NASA Postdoctoral Program
- Jet Propulsion Laboratory
- National Aeronautics and Space Administration
- 80NM0018D0004
Dates
- Accepted
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2025-02-04Accepted