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Photoexcitation flips 2D moiré devices from metals to insulators in ultrafast test

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Photoexcitation flips 2D moiré devices from metals to insulators in ultrafast test
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Quantum materials, materials with properties that are governed by the laws of quantum mechanics describing many-body interactions, have proved promising for the development of various advanced technologies. Many of these materials undergo so-called phase transitions, switching between different physical states that alter how electrons flow through them. Some previous studies have demonstrated the transition from insulating states to metallic states in quantum materials, via a process called photoexcitation (i.e., the excitation of electrons using light).

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Original publisherPhys.org
Canonical URLhttps://phys.org/news/2026-06-photoexcitation-flips-2d-moir-devices.html
Publication timeThu, 04 Jun 2026 07:00:04 EDT
Retrieval time2026-06-04T11:01:50.269Z
Last seen2026-06-04T11:01:53.595Z
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Basis: Derived from the published RSS/Atom feed. Contact: [email protected]. Reviewed: 2026-07-24.

Opening excerpt (first ~120 words) tap to expand

June 4, 2026 feature Photoexcitation flips 2D moiré devices from metals to insulators in ultrafast test by Ingrid Fadelli, Phys.org Ingrid Fadelli Author Meet our staff & contributors Learn about our editorial standards edited by Sadie Harley, reviewed by Robert Egan Sadie Harley Scientific Editor Meet our editorial team Behind our editorial process Robert Egan Associate Editor Meet our editorial team Behind our editorial process Editors' notes This article has been reviewed according to Science X's editorial process and policies.

Excerpt limited to ~120 words for fair-use compliance. The full article is at Phys.org.

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