2015/11/05 by N. Samkharadze, A. Bruno, P. Scarlino +4 · 2 citations
Physics and Astronomy · #cond-mat.mes-hall
paper · pdf · doi:10.1103/physrevapplied.5.044004
published as Phys. Rev. Applied 5, 044004 (2016)
arxiv created 2015/11/05 · arxiv updated 2016/04/13
We present superconducting microwave-frequency resonators based on NbTiN nanowires. The small cross section of the nanowires minimizes vortex generation, making the resonators resilient to magnetic fields. Measured intrinsic quality factors exceed 2× 105 in a 6 T in-plane magnetic field, and 3× 104 in a 350 mT perpendicular magnetic field. Due to their high characteristic impedance, these resonators are expected to develop zero-point voltage fluctuations one order of magnitude larger than in standard coplanar waveguide resonators. These properties make the nanowire resonators well suited for circuit QED experiments needing strong coupling to quantum systems with small electric dipole moments and requiring a magnetic field, such as electrons in single and double quantum dots.