English

Coherence in a transmon qubit with epitaxial tunnel junctions

Superconductivity 2011-12-30 v3

Abstract

We developed transmon qubits based on epitaxial tunnel junctions and interdigitated capacitors. This multileveled qubit, patterned by use of all-optical lithography, is a step towards scalable qubits with a high integration density. The relaxation time T1 is .72-.86mu sec and the ensemble dephasing time T2 is slightly larger than T1. The dephasing time T2 (1.36mu sec) is nearly energy-relaxation-limited. Qubit spectroscopy yields weaker level splitting than observed in qubits with amorphous barriers in equivalent-size junctions. The qubit's inferred microwave loss closely matches the weighted losses of the individual elements (junction, wiring dielectric, and interdigitated capacitor), determined by independent resonator measurements.

Keywords

Cite

@article{arxiv.1111.5083,
  title  = {Coherence in a transmon qubit with epitaxial tunnel junctions},
  author = {Martin P. Weides and Jeffrey S. Kline and Michael R. Vissers and Martin O. Sandberg and David S. Wisbey and Blake R. Johnson and Thomas A. Ohki and David P. Pappas},
  journal= {arXiv preprint arXiv:1111.5083},
  year   = {2011}
}
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