Two-dimensional Lattice Gauge Theories with Superconducting Quantum Circuits
arXiv:1407.6066 · doi:10.1016/j.aop.2014.09.011
Abstract
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 models, and of valence bond solid and spin liquid phases in quantum dimer models. Fractionalized confining strings and the real-time dynamics of quantum phase transitions are accessible as well. Here we show how state-of-the-art superconducting technology allows us to simulate these phenomena in relatively small circuit lattices. By exploiting the strong non-linear couplings between quantized excitations emerging when superconducting qubits are coupled, we show how to engineer gauge invariant Hamiltonians, including ring-exchange and four-body Ising interactions. We demonstrate that, despite decoherence and disorder effects, minimal circuit instances allow us to investigate properties such as the dynamics of electric flux strings, signaling confinement in gauge invariant field theories. The experimental realization of these models in larger superconducting circuits could address open questions beyond current computational capability.
Published version
References in corpus (14)
- Charge insensitive qubit design derived from the Cooper pair box
- Demonstration of Two-Qubit Algorithms with a Superconducting Quantum Processor
- Superconducting qubit in waveguide cavity with coherence time approaching 0.1ms
- Suppressing Charge Noise Decoherence in Superconducting Charge Qubits
- Controlling the spontaneous emission of a superconducting transmon qubit
- Time-reversal symmetry breaking in circuit-QED based photon lattices
- Atomic Quantum Simulation of U(N) and SU(N) Non-Abelian Lattice Gauge Theories
- A cold-atom quantum simulator for SU(2) Yang-Mills lattice gauge theory
- Low-Disorder Microwave Cavity Lattices for Quantum Simulation with Photons
- Atomic quantum simulator for lattice gauge theories and ring exchange models
- Optical Abelian Lattice Gauge Theories
- Simulating 2+1d Lattice QED with dynamical matter using ultracold atoms
- Interfaces, Strings, and a Soft Mode in the Square Lattice Quantum Dimer Model
- Parametric four-wave mixing toolbox for superconducting resonators
Cited by in corpus (4)
- Digital lattice gauge theories
- Digital quantum simulation of lattice gauge theories with dynamical fermionic matter
- Efficient Basis Formulation for (1+1)-Dimensional SU(2) Lattice Gauge Theory: Spectral calculations with matrix product states
- Meissner-like effect for synthetic gauge field in multimode cavity QED