Artificial gauge fields in materials and engineered systems
arXiv:1710.00851 · doi:10.1016/j.crhy.2018.03.002
Abstract
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, ultracold gases and mechanical setups. It is the aim of this review to offer, for the first time, a unified view on these various forms of artificial electromagnetic fields and spin-orbit couplings for matter and light. This topical review provides a general introduction to the universal concept of engineered gauge fields, in a form which is accessible to young researchers entering the field. Moreover, this work aims to connect different communities, by revealing explicit links between the diverse forms and realizations of artificial gauge fields.
35 pages (+ references), 19 figures. First version submitted to the journal. Comments are most welcome!
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Cited by in corpus (156)
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- Generalized Neumann boundary condition for the scalar field
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- Gauging away the Stoner model: Engineering unconventional metallic ferromagnetism with artificial gauge fields
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- Geometrical frustration, power law tunneling and non-local gauge fields from scattered light
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- Entanglement Spectroscopy and probing the Li-Haldane Conjecture in Topological Quantum Matter
- Study on axial fields in the dynamically assisted Schwinger effect
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- Separation of quadrupole, spin, and charge across the magnetic phases of a one-dimensional interacting spin-1 gas
- Interacting Bose-condensed gases
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- Orbital Frontiers: Harnessing Higher Modes in Photonic Simulators
- Quantum localization in incommensurate tight-binding chains