Synthetic dimensions for topological and quantum phases: Perspective

Fuente: arXiv
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Main Authors: Argüello-Luengo, Javier, Bhattacharya, Utso, Celi, Alessio, Chhajlany, Ravindra W., Grass, Tobias, Płodzień, Marcin, Rakshit, Debraj, Salamon, Tymoteusz, Stornati, Paolo, Tarruell, Leticia, Lewenstein, Maciej
Format: Preprint
Published: 2023
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author Argüello-Luengo, Javier
Bhattacharya, Utso
Celi, Alessio
Chhajlany, Ravindra W.
Grass, Tobias
Płodzień, Marcin
Rakshit, Debraj
Salamon, Tymoteusz
Stornati, Paolo
Tarruell, Leticia
Lewenstein, Maciej
author_facet Argüello-Luengo, Javier
Bhattacharya, Utso
Celi, Alessio
Chhajlany, Ravindra W.
Grass, Tobias
Płodzień, Marcin
Rakshit, Debraj
Salamon, Tymoteusz
Stornati, Paolo
Tarruell, Leticia
Lewenstein, Maciej
contents In this Perspective article we report on recent progress on studies of synthetic dimensions, mostly, but not only, based on the research realized around the Barcelona groups (ICFO, UAB), Donostia (DIPC), Poznań (UAM), Kraków (UJ), and Allahabad (HRI). The concept of synthetic dimensions works particularly well in atomic physics, quantum optics, and photonics, where the internal degrees of freedom (Zeeman sublevels of the ground state, metastable excited states, or motional states for atoms, and angular momentum states or transverse modes for photons) provide the synthetic space. We describe our attempts to design quantum simulators with synthetic dimensions, to mimic curved spaces, artificial gauge fields, lattice gauge theories, twistronics, quantum random walks, and more.
format Preprint
id arxiv_https___arxiv_org_abs_2310_19549
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Synthetic dimensions for topological and quantum phases: Perspective
Argüello-Luengo, Javier
Bhattacharya, Utso
Celi, Alessio
Chhajlany, Ravindra W.
Grass, Tobias
Płodzień, Marcin
Rakshit, Debraj
Salamon, Tymoteusz
Stornati, Paolo
Tarruell, Leticia
Lewenstein, Maciej
Quantum Physics
Quantum Gases
High Energy Physics - Lattice
Atomic Physics
In this Perspective article we report on recent progress on studies of synthetic dimensions, mostly, but not only, based on the research realized around the Barcelona groups (ICFO, UAB), Donostia (DIPC), Poznań (UAM), Kraków (UJ), and Allahabad (HRI). The concept of synthetic dimensions works particularly well in atomic physics, quantum optics, and photonics, where the internal degrees of freedom (Zeeman sublevels of the ground state, metastable excited states, or motional states for atoms, and angular momentum states or transverse modes for photons) provide the synthetic space. We describe our attempts to design quantum simulators with synthetic dimensions, to mimic curved spaces, artificial gauge fields, lattice gauge theories, twistronics, quantum random walks, and more.
title Synthetic dimensions for topological and quantum phases: Perspective
topic Quantum Physics
Quantum Gases
High Energy Physics - Lattice
Atomic Physics
url https://arxiv.org/abs/2310.19549