LLE Talks: Nonlinear optical diode effect in a magnetic Weyl semimetal
Topic: Nonlinear optical diode effect in a magnetic Weyl semimetal
Speaker: Christian Tzschaschel (University of Zurich)
Date: 26 November 2025
Weyl semimetals have emerged as a promising quantum material system to discover novel electrical and optical phenomena, due to their combination of nontrivial quantum geometry and strong symmetry breaking. Here, I will present the observation of the nonlinear optical diode effect (NODE) in the magnetic Weyl semimetal CeAlSi, where the magnetic state of CeAlSi introduces a pronounced directionality in the nonlinear optical second-harmonic generation (SHG). By physically reversing the beam path, we show that the measured SHG intensity can change by at least a factor of six between forward and backward propagation over a wide bandwidth exceeding 250 meV. Supported by density-functional theory calculations, we establish the linearly dispersive bands emerging from Weyl nodes as the origin of the extreme bandwidth. By utilizing the electronically conductive semimetallic nature of CeAlSi, we demonstrate current-induced magnetization switching and thus electrical control of the NODE in a mesoscopic spintronic device structure. Our results advance ongoing research to identify novel nonlinear optical/transport phenomena in magnetic topological materials. The NODE further opens new pathways for the unidirectional manipulation of light such as electrically controlled optical isolators [1].
[1] CT et al., Nature Communications 15, 3017 (2024)
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Laserlab-Europe Talks is a series of online seminars and panel discussions proposed and organised by our community on specific topics (thematic or research-specific) and provide a platform for regular information exchange and knowledge sharing. The Laserlab-Europe Talks are open to all interested parties, from PhD students to experts in the field and industrial and medical partners.
This Laserlab-Europe Talk is coorganised by Laserlab-Europe and Lasers4EU.
Lasers4EU offers international researchers from academia and industry access to state-of-the-art laser technology at 27 facilities across Europe. The project is co-funded by the European Commission.
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Websites:
Laserlab-Europe: https://laserlab-europe.eu/
Lasers4EU: https://lasers4.eu/
Date created: 2025-11-27
Date modified: 2026-06-01
Date published: 2025-11-27
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