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Unveiling the orbital texture of 1T-TiTe₂ using intrinsic linear dichroism in multidimensional photoemission spectroscopy

Physics

Unveiling the orbital texture of 1T-TiTe₂ using intrinsic linear dichroism in multidimensional photoemission spectroscopy

S. Beaulieu, M. Schüler, et al.

Discover groundbreaking research on the orbital texture in transition metal dichalcogenides by Samuel Beaulieu and his team. This study uses cutting-edge angle-resolved photoemission spectroscopy to unveil the relationship between orbital orientation and intrinsic linear dichroism in electronic properties. A must-listen for those fascinated by material science and electronic structures!... show more
Abstract
The momentum-dependent orbital character in crystalline solids, referred to as orbital texture, is of capital importance in the emergence of symmetry-broken collective phases, such as charge density waves as well as superconducting and topological states of matter. By performing extreme ultraviolet multidimensional angle-resolved photoemission spectroscopy for two different crystal orientations linked to each other by mirror symmetry, we isolate and identify the role of orbital texture in photoemission from the transition metal dichalcogenide 1T-TiTe₂. By comparing our experimental results with theoretical calculations based on both a quantitative one-step model of photoemission and an intuitive tight-binding model, we unambiguously demonstrate the link between the momentum-dependent orbital orientation and the emergence of strong intrinsic linear dichroism in the photoelectron angular distributions. Our results represent an important step towards going beyond band structure (eigenvalues) mapping and learning about electronic wavefunction and orbital texture of solids by exploiting matrix element effects in photoemission spectroscopy.
Publisher
npj Quantum Materials
Published On
Authors
Samuel Beaulieu, Michael Schüler, Jakub Schusser, Shuo Dong, Tommaso Pincelli, Julian Maklar, Alexander Neef, Friedrich Reinert, Martin Wolf, Laurenz Rettig, Ján Minár, Ralph Ernstorfer
Tags
orbital texture
transition metal dichalcogenides
1T-TiTe₂
photoemission spectroscopy
linear dichroism
electronic wavefunction
matrix element effects
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