Materials and devices for fundamental quantum science and quantum technologies

Fuente: arXiv
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Autori principali: Polini, Marco, Giazotto, Francesco, Fong, Kin Chung, Pop, Ioan M., Schuck, Carsten, Boccali, Tommaso, Signorelli, Giovanni, D'Elia, Massimo, Hadfield, Robert H., Giovannetti, Vittorio, Rossini, Davide, Tredicucci, Alessandro, Efetov, Dmitri K., Koppens, Frank H. L., Jarillo-Herrero, Pablo, Grassellino, Anna, Pisignano, Dario
Natura: Preprint
Pubblicazione: 2022
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author Polini, Marco
Giazotto, Francesco
Fong, Kin Chung
Pop, Ioan M.
Schuck, Carsten
Boccali, Tommaso
Signorelli, Giovanni
D'Elia, Massimo
Hadfield, Robert H.
Giovannetti, Vittorio
Rossini, Davide
Tredicucci, Alessandro
Efetov, Dmitri K.
Koppens, Frank H. L.
Jarillo-Herrero, Pablo
Grassellino, Anna
Pisignano, Dario
author_facet Polini, Marco
Giazotto, Francesco
Fong, Kin Chung
Pop, Ioan M.
Schuck, Carsten
Boccali, Tommaso
Signorelli, Giovanni
D'Elia, Massimo
Hadfield, Robert H.
Giovannetti, Vittorio
Rossini, Davide
Tredicucci, Alessandro
Efetov, Dmitri K.
Koppens, Frank H. L.
Jarillo-Herrero, Pablo
Grassellino, Anna
Pisignano, Dario
contents Technologies operating on the basis of quantum mechanical laws and resources such as phase coherence and entanglement are expected to revolutionize our future. Quantum technologies are often divided into four main pillars: computing, simulation, communication, and sensing & metrology. Moreover, a great deal of interest is currently also nucleating around energy-related quantum technologies. In this Perspective, we focus on advanced superconducting materials, van der Waals materials, and moiré quantum matter, summarizing recent exciting developments and highlighting a wealth of potential applications, ranging from high-energy experimental and theoretical physics to quantum materials science and energy storage.
format Preprint
id arxiv_https___arxiv_org_abs_2201_09260
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Materials and devices for fundamental quantum science and quantum technologies
Polini, Marco
Giazotto, Francesco
Fong, Kin Chung
Pop, Ioan M.
Schuck, Carsten
Boccali, Tommaso
Signorelli, Giovanni
D'Elia, Massimo
Hadfield, Robert H.
Giovannetti, Vittorio
Rossini, Davide
Tredicucci, Alessandro
Efetov, Dmitri K.
Koppens, Frank H. L.
Jarillo-Herrero, Pablo
Grassellino, Anna
Pisignano, Dario
Quantum Physics
Materials Science
Superconductivity
Technologies operating on the basis of quantum mechanical laws and resources such as phase coherence and entanglement are expected to revolutionize our future. Quantum technologies are often divided into four main pillars: computing, simulation, communication, and sensing & metrology. Moreover, a great deal of interest is currently also nucleating around energy-related quantum technologies. In this Perspective, we focus on advanced superconducting materials, van der Waals materials, and moiré quantum matter, summarizing recent exciting developments and highlighting a wealth of potential applications, ranging from high-energy experimental and theoretical physics to quantum materials science and energy storage.
title Materials and devices for fundamental quantum science and quantum technologies
topic Quantum Physics
Materials Science
Superconductivity
url https://arxiv.org/abs/2201.09260