Circuit QED-based measurement of vortex lattice order in a Josephson junction array
arXiv:1803.04113 · doi:10.1103/PhysRevB.98.060501
Abstract
Superconductivity provides a canonical example of a quantum phase of matter. When superconducting islands are connected by Josephson junctions in a lattice, the low temperature state of the system can map to the celebrated XY model and its associated universality classes. This has been used to experimentally implement realizations of Mott insulator and Berezinskii--Kosterlitz--Thouless (BKT) transitions to vortex dynamics analogous to those in type-II superconductors. When an external magnetic field is added, the effective spins of the XY model become frustrated, leading to the formation of topological defects (vortices). Here we observe the many-body dynamics of such an array, including frustration, via its coupling to a superconducting microwave cavity. We take the design of the transmon qubit, but replace the single junction between two antenna pads with the complete array. This allows us to probe the system at 10 mK with minimal self-heating by using weak coherent states at the single (microwave) photon level to probe the resonance frequency of the cavity. We observe signatures of ordered vortex lattice at rational flux fillings of the array.
Main text (5 pages, 3 figures) and Supplementary Material (5 pages, 2 figures)
References in corpus (5)
- Charge insensitive qubit design derived from the Cooper pair box
- Probing many-body dynamics on a 51-atom quantum simulator
- Observation of a Many-Body Dynamical Phase Transition with a 53-Qubit Quantum Simulator
- Quantum simulation of a Fermi-Hubbard model using a semiconductor quantum dot array
- High-Fidelity Readout in Circuit Quantum Electrodynamics Using the Jaynes-Cummings Nonlinearity
Cited by in corpus (8)
- 4D spinless topological insulator in a periodic electric circuit
- Aharonov-Bohm Caging and Inverse Anderson transition in Ultracold Atoms
- Left-handed superlattice metamaterials for circuit QED
- Probing XY phase transitions in a Josephson junction array with tunable frustration
- Chiral SQUID-metamaterial waveguide for circuit-QED
- Insulating Phase in Two-dimensional Josephson-Junction Arrays Investigated by Nonlinear Transport
- Circulation by microwave-induced vortex transport for signal isolation
- Linear response theory of Josephson junction arrays in a microwave cavity