We introduce Weyl Josephson circuits: small Josephson junction circuits that simulate Weyl band structures. We first formulate a general approach to design circuits that are analogous to Bloch Hamiltonians of a desired dimensionality and symmetry class. We then construct and analyze a six-junction device that produces a 3D Weyl Hamiltonian with broken inversion symmetry and in which topological phase transitions can be triggered \emph{in situ}. We argue that currently available superconducting circuit technology allows experiments that probe topological properties inaccessible in condensed matter systems.
@article{arxiv.2008.13758,
title = {Weyl Josephson Circuits},
author = {Valla Fatemi and Anton R. Akhmerov and Landry Bretheau},
journal= {arXiv preprint arXiv:2008.13758},
year = {2021}
}