Charge-Neutral Electronic Excitations in Quantum Insulators

Fuente: arXiv
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Main Authors: Wu, Sanfeng, Schoop, Leslie M., Sodemann, Inti, Moessner, Roderich, Cava, Robert J., Ong, N. P.
Format: Preprint
Published: 2024
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author Wu, Sanfeng
Schoop, Leslie M.
Sodemann, Inti
Moessner, Roderich
Cava, Robert J.
Ong, N. P.
author_facet Wu, Sanfeng
Schoop, Leslie M.
Sodemann, Inti
Moessner, Roderich
Cava, Robert J.
Ong, N. P.
contents Experiments on quantum materials have uncovered many interesting quantum phases ranging from superconductivity to a variety of topological quantum matter including the recently observed fractional quantum anomalous Hall insulators. The findings have come in parallel with the development of approaches to probe the rich excitations inherent in such systems. In contrast to observing electrically charged excitations, the detection of charge-neutral electronic excitations in condensed matter remains difficult, though they are essential to understanding a large class of strongly correlated phases. Low-energy neutral excitations are especially important in characterizing unconventional phases featuring electron fractionalization, such as quantum spin liquids, spin ices, and insulators with neutral Fermi surfaces. In this perspective, we discuss searches for neutral fermionic, bosonic, or anyonic excitations in unconventional insulators, highlighting theoretical and experimental progress in probing excitonic insulators, new quantum spin liquid candidates and emergent correlated insulators based on two-dimensional layered crystals and moiré materials. We outline the promises and challenges in probing and utilizing quantum insulators, and discuss exciting new opportunities for future advancements offered by ideas rooted in next-generation quantum materials, devices, and experimental schemes.
format Preprint
id arxiv_https___arxiv_org_abs_2411_09496
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Charge-Neutral Electronic Excitations in Quantum Insulators
Wu, Sanfeng
Schoop, Leslie M.
Sodemann, Inti
Moessner, Roderich
Cava, Robert J.
Ong, N. P.
Strongly Correlated Electrons
Mesoscale and Nanoscale Physics
Materials Science
Experiments on quantum materials have uncovered many interesting quantum phases ranging from superconductivity to a variety of topological quantum matter including the recently observed fractional quantum anomalous Hall insulators. The findings have come in parallel with the development of approaches to probe the rich excitations inherent in such systems. In contrast to observing electrically charged excitations, the detection of charge-neutral electronic excitations in condensed matter remains difficult, though they are essential to understanding a large class of strongly correlated phases. Low-energy neutral excitations are especially important in characterizing unconventional phases featuring electron fractionalization, such as quantum spin liquids, spin ices, and insulators with neutral Fermi surfaces. In this perspective, we discuss searches for neutral fermionic, bosonic, or anyonic excitations in unconventional insulators, highlighting theoretical and experimental progress in probing excitonic insulators, new quantum spin liquid candidates and emergent correlated insulators based on two-dimensional layered crystals and moiré materials. We outline the promises and challenges in probing and utilizing quantum insulators, and discuss exciting new opportunities for future advancements offered by ideas rooted in next-generation quantum materials, devices, and experimental schemes.
title Charge-Neutral Electronic Excitations in Quantum Insulators
topic Strongly Correlated Electrons
Mesoscale and Nanoscale Physics
Materials Science
url https://arxiv.org/abs/2411.09496