English

Spectroscopy of a Cooper-Pair Box Coupled to a Two-Level System Via Charge and Critical Current

Quantum Physics 2013-05-31 v1 Mesoscale and Nanoscale Physics

Abstract

We report on the quadrupling of the transition spectrum of an Al/AlOx/Al Cooper-pair box (CPB) charge qubit in the 4.0-7.3 GHz frequency range. The qubit was coupled to a quasi-lumped element Al superconducting resonator and measured at a temperature of 25 mK. We obtained good matches between the observed spectrum and the spectra calculated from a model Hamiltonian containing two distinct low excitation energy two-level systems (TLS) coupled to the CPB. In our model, each TLS has a charge that tunnels between two sites in a local potential and induces a change in the CPB critical current. By fitting the model to the spectrum, we have extracted microscopic parameters of the fluctuators including the well asymmetry, tunneling rate, and a surprisingly large fractional change (30-40%) in the critical current (12 nA). This large change is consistent with a Josephson junction with a non-uniform tunnel barrier containing a few dominant conduction channels and a TLS that modulates one of them.

Keywords

Cite

@article{arxiv.1305.3962,
  title  = {Spectroscopy of a Cooper-Pair Box Coupled to a Two-Level System Via Charge and Critical Current},
  author = {V. Zaretskey and B. Suri and S. Novikov and F. C. Wellstood and B. S. Palmer},
  journal= {arXiv preprint arXiv:1305.3962},
  year   = {2013}
}

Comments

9 pages, 5 figures