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Developing superconducting resonators using the transition metal perovskite oxide Strontium Titanate

ORAL

Abstract

Coplanar superconducting resonators are crucial building blocks for various quantum computing architectures, quantum sensors and quantum memories. Strontium Titanate (STO) can be an exciting material platform for such emerging technologies, due to its high dielectric constant and semiconductor-like electrostatic tunability of superconductivity. In this study we have successfully fabricated planar hanger resonators (ranging from 2.8 to 3.3 mm in length) on 50 nm Nb thin films, grown by sputtering on (001) STO substrates. Through microwave transmission measurements, we observe fundamental resonance frequencies with additional harmonics in the 100 - 750 MHz range; this corresponds to a large dielectric constant of 40,000, which is consistent with incipient ferroelectric behavior of STO. These findings open up an exciting avenue for exploring extremely compact resonator geometries.

Publication: In the process of collecting more data towards a planned paper about developing superconducting microwave resonators on Strontium Titanate

Presenters

  • Huma Yusuf

    University of Cincinnati

Authors

  • Huma Yusuf

    University of Cincinnati

  • Sushant Padhye

    University of Cincinnati

  • Ridwan Nahar

    University of Alabama

  • Babajide Olaolu Akintunde

    University of Alabama

  • Ashik Imran

    University of Alabama at Tuscaloosa

  • Adam J Hauser

    University of Alabama

  • Evgeny Mikheev

    University of Cincinnati