Atomtronic circuits: from many-body physics to quantum technologies
arXiv:2107.08561 · doi:10.1103/RevModPhys.94.041001
Abstract
Atomtronics is an emerging field that aims to manipulate ultracold atom moving in matter wave circuits for both fundamental studies in quantum science and technological applications. In this colloquium, we review recent progress in matter-wave circuitry and atomtronics-based quantum technology. After a short introduction to the basic physical principles and the key experimental techniques needed to realize atomtronic systems, we describe the physics of matter-waves in simple circuits such as ring traps and two-terminal systems. The main experimental observations and outstanding questions are discussed. We also present possible applications to a broad range of quantum technologies, from quantum sensing with atom interferometry to future quantum simulation and quantum computation architectures.
33 revtex pages; 10 figs. To be published in Reviews of Modern Physics
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Cited by in corpus (100)
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- Ultracold dipolar bosons trapped in atomtronic circuits
- Bloch Oscillations of a Soliton in a 1D Quantum Fluid
- Dimers and discrete breathers in Bose-Einstein condensates in a quasi-periodic potential
- A cavity-microscope for micrometer-scale control of atom-photon interactions
- Shapiro steps in strongly-interacting Fermi gases
- Interference dynamics of matter-waves of SU() fermions
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