744 citations · 1.6k across the 9 of their papers we have counts for
14 papers
Dipolar Spin Models with Arrays of Superconducting Qubits
M. Dalmonte, S. I. Mirzai, P. R. Muppalla +3
We propose a novel platform for quantum many body simulations of dipolar spin models using current circuit QED technology. Our basic building blocks are 3D Transmon qubits where we…
Two-dimensional Lattice Gauge Theories with Superconducting Quantum Circuits
D. Marcos, P. Widmer, E. Rico +4
A quantum simulator of U(1) lattice gauge theories can be implemented with superconducting circuits. This allows the investigation of confined and deconfined phases in quantum link…
Implementation of the Dicke lattice model in hybrid quantum system arrays
Liujun Zou, David Marcos, Sebastian Diehl +4
Generalized Dicke models can be implemented in hybrid quantum systems built from ensembles of nitrogen-vacancy (NV) centers in diamond coupled to superconducting microwave cavities…
Constrained dynamics via the Zeno effect in quantum simulation: Implementing non-Abelian lattice gauge theories with cold atoms
K. Stannigel, P. Hauke, D. Marcos +4
We show how engineered classical noise can be used to generate constrained Hamiltonian dynamics in atomic quantum simulators of many-body systems, taking advantage of the continuou…
Quantum simulation of a lattice Schwinger model in a chain of trapped ions
Philipp Hauke, David Marcos, Marcello Dalmonte +1
We discuss how a lattice Schwinger model can be realized in a linear ion trap, allowing a detailed study of the physics of Abelian lattice gauge theories related to one-dimensional…
Superconducting Circuits for Quantum Simulation of Dynamical Gauge Fields
D. Marcos, P. Rabl, E. Rico +1
We describe a superconducting-circuit lattice design for the implementation and simulation of dynamical lattice gauge theories. We illustrate our proposal by analyzing a one-dimens…