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Synthetic Gauge Potentials

Publications

Experimental realization of a fermionic spin-momentum lattice
Paul Lauria, Wei-Ting Kuo, Nigel R. Cooper and Julio T. Barreiro
Phys. Rev. Lett. 128, 245301 (2022) [PRL Editors' Suggestion, Physics Synopsis, arXiv:2203.05543]

Fractional Quantum Hall States of Bosons: Properties and Prospects for Experimental Realization
N. R. Cooper
Chapter 10 in Fractional Quantum Hall Effects: New Developments, editors B.I. Halperin and \ J.K. Jain (World Scientific, 2020)

Synthetic Gauge Fields for Lattices with Multi-Orbital Unit Cells: Routes towards a π-flux Dice Lattice with Flat Bands
Gunnar Möller and Nigel R. Cooper
New J. Phys. 20, 073025 (2018) [NJP, arXiv:1804.10261]

Topological Bands for Ultracold Atoms
N. R. Cooper, J. Dalibard, I. B. Spielman
Rev. Mod. Phys. 91, 015005 (2019) [RMP, arXiv:1803.00249]

Synthetic dimensions in the strong coupling limit and pair-superfluids
Thomas Bilitewski and Nigel R. Cooper
Phys. Rev. A 94, 023630 (2016) [PRA, arXiv:1606.09089]

Superradiance induced particle flow via dynamical gauge coupling
Wei Zheng and Nigel R. Cooper
Phys. Rev. Lett. 117, 175302 (2016) [PRL, arXiv:1604.06630]

Synthetic spin-orbit coupling in an optical lattice clock
Michael L. Wall, Andrew P. Koller, Shuming Li, Xibo Zhang, Nigel R. Cooper, Jun Ye, Ana Maria Rey
Phys. Rev. Lett. 116, 035301 (2016) [PRL, arXiv:1509.05846]

Bosonic integer quantum Hall effect in optical flux lattices
A. Sterdyniak, Nigel R. Cooper and N. Regnault
Phys. Rev. Lett. 115, 116802 (2015) [PRL, arXiv:1506.03643]

Dynamic optical lattices of sub-wavelength spacing for ultracold atoms
Sylvain Nascimbène, Nathan Goldman, Nigel R. Cooper and Jean Dalibard
Phys. Rev. Lett. 115, 140401 (2015) [PRL, arXiv:1506.00558]

Ferromagnetic-nematic order and strongly correlated phases of fermions in optical flux lattices
Simon C. Davenport and Nigel R. Cooper
Phys. Rev. A 92, 023608 (2015) [PRA, arXiv:1504.07232]

Fractional Chern Insulators in Harper-Hofstadter Bands with Higher Chern Number
Gunnar Möller and Nigel R. Cooper
Phys. Rev. Lett. 115, 126401 (2015) [PRL, arXiv:1504.06623]

Population dynamics in Floquet realisation of Harper-Hofstadter Hamiltonian
Thomas Bilitewski and Nigel R. Cooper
Phys. Rev. A 91, 063611 (2015) [PRA, arXiv:1504.05491]

Quantum Quenches in Chern Insulators
M. D. Caio, N. R. Cooper and M. J. Bhaseen
Phys. Rev. Lett. 115, 236403 (2015) [PRL, arXiv:1504.01910]

Adiabatic Control of Atomic Dressed States for Transport and Sensing
N. R. Cooper and A. M. Rey
Phys. Rev. A 92, 021401(R) (2015) [PRA, arXiv:1503.05498]

Artificial Magnetic Fields in Momentum Space in Spin-Orbit Coupled Systems
Hannah M. Price, Tomoki Ozawa, Nigel R. Cooper and Iacopo Carusotto
Phys. Rev. A 91, 033606 (2015) [PRA, arXiv:1412.3638]

Periodically-driven quantum matter: the case of resonant modulations
N. Goldman, J. Dalibard, M. Aidelsburger and N. R. Cooper
Phys. Rev. A 91, 033632 (2015) [PRA, arXiv:1410.8425]

Scattering Theory for Floquet-Bloch States
Thomas Bilitewski and Nigel R. Cooper
Phys. Rev. A 91, 033601 (2015) [PRA, arXiv:1410.5364]

Interacting bosons in topological optical flux lattices
A. Sterdyniak, B. Andrei Bernevig, Nigel R. Cooper and N. Regnault
Phys. Rev. B 91, 035115 (2015) [PRB, arXiv:1410.0357]

Measuring the Chern number of Hofstadter bands with ultracold bosonic atoms
M. Aidelsburger, M. Lohse, C. Schweizer, M. Atala, J. T. Barreiro, S. Nascimbène, N. R. Cooper, I. Bloch, N. Goldman
Nature Physics 11, 162 (2015) [NatPhys, arXiv:1407.4205]
See also the commentary by Wolfgang Ketterle.

Dynamic Optical Superlattices with Topological Bands
Stefan K. Baur, Monika H. Schleier-Smith and Nigel R. Cooper
Phys. Rev. A 89, 051606(R) (2014) [PRA, arXiv:1402.3295]

Effects of Berry Curvature on the Collective Modes of Ultracold Gases
H. M. Price and N. R. Cooper
Phys. Rev. Lett. 111, 220407 (2013) [PRL, arXiv:1306.4796]

Reaching Fractional Quantum Hall States with Optical Flux Lattices
N. R. Cooper and J. Dalibard
Phys. Rev. Lett. 110, 185301 (2013) [PRL, Physics Viewpoint Editors' Suggestion, arXiv:1212.3552 ]
See also the viewpoint article by Maria Daghofer and Masudul Haque.

Coupled Ferromagnetic and Nematic Ordering of Fermions in an Optical Flux Lattice
S. K. Baur and N. R. Cooper
Phys. Rev. Lett. 109, 265301 (2012) [PRL, arXiv:1208.6540]

Designing Topological Bands in Reciprocal Space
N. R. Cooper and R. Moessner
Phys. Rev. Lett. 109, 215302 (2012) [PRL, Editors' Suggestion, arXiv:1208.4579]

Vortex lattices for ultracold bosonic atoms in a non-Abelian gauge potential
S. Komineas and N. R. Cooper
Phys. Rev. A 85, 053623 (2012) [PRA, arXiv:1203.3308]

Correlated Phases of Bosons in the Flat Lowest Band of the Dice Lattice
Gunnar Möller and Nigel R. Cooper
Phys. Rev. Lett. 108, 045306 (2012) [PRL, arXiv:1111.0239]

Z_2 Topological Insulators in Ultracold Atomic Gases
B. Béri and N. R. Cooper
Phys. Rev. Lett. 107, 145301 (2011) [PRL, arXiv:1105.1252]

Optical Flux Lattices for Two-Photon Dressed States
N. R. Cooper and J. Dalibard
Europhysics Letters 95, 66004 (2011) [EPL, arXiv:1106.0820]

Probing ultracold Fermi gases with light-induced gauge potentials
Jonathan M. Edge and N. R. Cooper
Phys. Rev. A 83, 053619 (2011) [PRA, arXiv:1102.1399]

Optical Flux Lattices for Ultracold Atomic Gases
N. R. Cooper
Phys. Rev. Lett. 106, 175301 (2011) [PRL, Physics Viewpoint Editors' Suggestion, arXiv:1101.2382 ]
See also the viewpoint article by Ian Spielman.

A Spectroscopic Method to Measure the Superfluid Fraction of an Ultracold Atomic Gas
S. T. John, Z. Hadzibabic, and N. R. Cooper
Phys. Rev. A 83, 023610 (2011) [PRA, arXiv:1011.2532]

Condensed Groundstates of Frustrated Bose-Hubbard Models
G. Möller, and N. R. Cooper
Phys. Rev. A 82, 063625 (2010) [PRA, arXiv:1009.4420]

Measuring the Superfluid Fraction of an Ultracold Atomic Gas
N. R. Cooper and Z. Hadzibabic
Phys. Rev. Lett. 104, 030401 (2010) [PRL, Physics Viewpoint Editors' Suggestion, arXiv:0910.4767]
See also the viewpoint article by Iacopo Carusotto.

Composite Fermion Theory for Bosonic Quantum Hall States on Lattices
G. Möller and N. R. Cooper
Phys. Rev. Lett. 103, 105303 (2009) [PRL, arXiv:0904.3097]