paper

Non-degenerate parametric amplifiers based on dispersion engineered Josephson junction arrays

arXiv:1909.08037 · doi:10.1103/PhysRevApplied.13.024015

Abstract

Determining the state of a qubit on a timescale much shorter than its relaxation time is an essential requirement for quantum information processing. With the aid of a new type of non-degenerate parametric amplifier, we demonstrate the continuous detection of quantum jumps of a transmon qubit with 90% fidelity in state discrimination. Entirely fabricated with standard two-step optical lithography techniques, this type of parametric amplifier consists of a dispersion engineered Josephson junction (JJ) array. By using long arrays, containing JJs, we can obtain amplification at multiple eigenmodes with frequencies below , which is the typical range for qubit readout. Moreover, by introducing a moderate flux tunability of each mode, employing superconducting quantum interference device (SQUID) junctions, a single amplifier device could potentially cover the entire frequency band between 1 and .

P.W. and I.T. contributed equally. 9 pages, 5 figures and appendices