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Probing high-frequency noise with macroscopic resonant tunneling

  • T. Lanting
  • , M. H.S. Amin
  • , M. W. Johnson
  • , F. Altomare
  • , A. J. Berkley
  • , S. Gildert
  • , R. Harris
  • , J. Johansson
  • , P. Bunyk
  • , E. Ladizinsky
  • , E. Tolkacheva
  • , D. V. Averin
  • D-Wave Systems Inc.
  • University of Agder

Research output: Contribution to journalArticlepeer-review

21 Scopus citations

Abstract

We have developed a method for extracting the high-frequency noise spectral density of an rf-SQUID flux qubit from macroscopic resonant tunneling (MRT) rate measurements. The extracted noise spectral density is consistent with that of an ohmic environment up to frequencies ~4 GHz. We have also derived an expression for the MRT line shape expected for a noise spectral density consisting of such a broadband ohmic component and an additional strongly peaked low-frequency component. This hybrid model provides an excellent fit to experimental data across a range of tunneling amplitudes and temperatures.

Original languageEnglish
Article number180502
JournalPhysical Review B - Condensed Matter and Materials Physics
Volume83
Issue number18
DOIs
StatePublished - May 10 2011

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