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Updated: Sep 7, 2025

Spectral and Angle-Resolved Magneto-Optical Characterization of Photonic Nanostructures
Published on: November 21, 2019
Lorentz-Boost-Driven Magneto-Optics in a Dirac Nodal-Line Semimetal
Jan Wyzula1, Xin Lu2, David Santos-Cottin3
1LNCMI-CNRS UPR3228, Université Grenoble Alpes, Université Toulouse 3, INSA Toulouse, EMFL, 25 rue des Martyrs, BP166, Grenoble Cedex 9, 38042, France.
Abstract:
Optical response of crystalline solids is to a large extent driven by excitations that promote electrons among individual bands. This allows one to apply optical and magneto-optical methods to determine experimentally the energy band gap -a fundamental property crucial to our understanding of any solid-with a great precision. Here it is shown that such conventional methods, applied with great success to many materials in the past, do not work in topological Dirac semimetals with a dispersive nodal line. There, the optically deduced band gap depends on how the magnetic field is oriented with respect to the crystal axes. Such highly unusual behavior is explained in terms of band-gap renormalization driven by Lorentz boosts which results from the Lorentz-covariant form of the Dirac Hamiltonian relevant for the nodal line at low energies.
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