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Characterization of Properties of 325-MHz Half-Wave Superconducting Resonators at Low Microwave Field Amplitudes

  • A. Sukhotski,
  • D. Bychanok,
  • E. Gurnevich,
  • H. Volunets,
  • S. Huseu,
  • S. Maksimenko,
  • V. Petrakovski,
  • A. Pakrouski,
  • I. Pobol,
  • V. Zalessky,
  • Y. Tamashevich,
  • M. Gusarova,
  • M. Lalayan,
  • S. Polozov,
  • D. Nikiforov,
  • Yu. Bespalov,
  • A. Butenko,
  • E. Syresin,
  • G. Trubnikov

摘要

Abstract

A prototype of the 325-MHz niobium half-wave coaxial resonator ( \(\beta = 0.21\) ) is developed, built, and tested at low microwave field amplitudes. Electromagnetic properties of the prototype in the superconducting state are investigated in the continuous wave regime and the damping regime using a highly stable radio-frequency (RF) generator and power detectors. The experimental data on the resonator’s response in the superconducting state are used to calculate its most important characteristics—the intrinsic Q value and the accelerating field. The experimentally measured Q value of the prototype is \({{Q}_{0}} = (3.5 \pm 0.1) \times {{10}^{8}}\) at input powers of up to +20 dBm.