Dipolar physics: a review of experiments with magnetic quantum gases

L Chomaz, I Ferrier-Barbut, F Ferlaino… - Reports on Progress …, 2022 - iopscience.iop.org
Since the achievement of quantum degeneracy in gases of chromium atoms in 2004, the
experimental investigation of ultracold gases made of highly magnetic atoms has …

Topological quantum matter in synthetic dimensions

T Ozawa, HM Price - Nature Reviews Physics, 2019 - nature.com
In the field of quantum simulation of condensed matter phenomena by artificially
engineering the Hamiltonian of an atomic, molecular or optical system, the concept of …

Roadmap on Atomtronics: State of the art and perspective

L Amico, M Boshier, G Birkl, A Minguzzi… - AVS Quantum …, 2021 - pubs.aip.org
Atomtronics deals with matter-wave circuits of ultracold atoms manipulated through
magnetic or laser-generated guides with different shapes and intensities. In this way, new …

Topological quantum matter with cold atoms

DW Zhang, YQ Zhu, YX Zhao, H Yan… - Advances in Physics, 2018 - Taylor & Francis
This is an introductory review of the physics of topological quantum matter with cold atoms.
Topological quantum phases, originally discovered and investigated in condensed matter …

Synthetic dimensions and spin-orbit coupling with an optical clock transition

LF Livi, G Cappellini, M Diem, L Franchi, C Clivati… - Physical review …, 2016 - APS
We demonstrate a novel way of synthesizing spin-orbit interactions in ultracold quantum
gases, based on a single-photon optical clock transition coupling two long-lived electronic …

Spin–orbit-coupled fermions in an optical lattice clock

S Kolkowitz, SL Bromley, T Bothwell, ML Wall, GE Marti… - Nature, 2017 - nature.com
Engineered spin–orbit coupling (SOC) in cold-atom systems can enable the study of new
synthetic materials and complex condensed matter phenomena,,,,,,,. However, spontaneous …

[HTML][HTML] Artificial gauge fields in materials and engineered systems

M Aidelsburger, S Nascimbene, N Goldman - Comptes Rendus Physique, 2018 - Elsevier
Artificial gauge fields are currently realized in a wide range of physical settings. This
includes solid-state devices but also engineered systems, such as photonic crystals …

Realizing topological edge states with Rydberg-atom synthetic dimensions

SK Kanungo, JD Whalen, Y Lu, M Yuan… - Nature …, 2022 - nature.com
A discrete degree of freedom can be engineered to match the Hamiltonian of particles
moving in a real-space lattice potential. Such synthetic dimensions are powerful tools for …

Hamiltonian engineering of spin-orbit–coupled fermions in a Wannier-Stark optical lattice clock

A Aeppli, A Chu, T Bothwell, CJ Kennedy, D Kedar… - Science …, 2022 - science.org
Engineering a Hamiltonian system with tunable interactions provides opportunities to
optimize performance for quantum sensing and explore emerging phenomena of many …

Direct observation of chiral currents and magnetic reflection in atomic flux lattices

FA An, EJ Meier, B Gadway - Science advances, 2017 - science.org
The prospect of studying topological matter with the precision and control of atomic physics
has driven the development of many techniques for engineering artificial magnetic fields and …