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Autores principales: Yang, F. Z., Luo, K. F., Zhang, Weizhe, Guo, Xiaoyu, Meier, W. R., Ni, H., Li, H. X., Lozano, P. Mercado, Fabbris, G., Said, A. H., Nelson, C., Zhang, T. T., May, A. F., McGuire, M. A., Juneja, R., Lindsay, L., Lee, H. N., Zuo, J. -M., Chi, M. F., Dai, X., Zhao, Liuyan, Miao, H.
Formato: Preprint
Publicado: 2024
Materias:
Acceso en línea:https://arxiv.org/abs/2410.10539
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author Yang, F. Z.
Luo, K. F.
Zhang, Weizhe
Guo, Xiaoyu
Meier, W. R.
Ni, H.
Li, H. X.
Lozano, P. Mercado
Fabbris, G.
Said, A. H.
Nelson, C.
Zhang, T. T.
May, A. F.
McGuire, M. A.
Juneja, R.
Lindsay, L.
Lee, H. N.
Zuo, J. -M.
Chi, M. F.
Dai, X.
Zhao, Liuyan
Miao, H.
author_facet Yang, F. Z.
Luo, K. F.
Zhang, Weizhe
Guo, Xiaoyu
Meier, W. R.
Ni, H.
Li, H. X.
Lozano, P. Mercado
Fabbris, G.
Said, A. H.
Nelson, C.
Zhang, T. T.
May, A. F.
McGuire, M. A.
Juneja, R.
Lindsay, L.
Lee, H. N.
Zuo, J. -M.
Chi, M. F.
Dai, X.
Zhao, Liuyan
Miao, H.
contents In one-dimensional quantum materials, conducting electrons and the underlying lattices can undergo a spontaneous translational symmetry breaking, known as Peierls transition. For nearly a century, the Peierls transition has been understood within the paradigm of electron-electron interactions mediated by longitudinal acoustic phonons. This classical picture has recently been revised in topological semimetals, where transverse acoustic phonons can couple with conducting p-orbital electrons and give rise to an unconventional Fermi surface instability, dubbed the transverse Peierls transition (TPT). Most interestingly, the TPT induced lattice distortions can further break rotation or mirror/inversion symmetries, leading to nematic or chiral charge density waves (CDWs). Quantum materials that host the TPT, however, have not been experimentally established. Here, we report the experimental discovery of an incommensurate TPT in the tetragonal Dirac semimetal EuAl$_4$. Using inelastic x-ray scattering with meV resolution, we observe the complete softening of a transverse acoustic phonon at the CDW wavevector upon cooling, whereas the longitudinal acoustic phonon is nearly unchanged. Combining with first principles calculations, we show that the incommensurate CDW wavevector matches the calculated charge susceptibility peak and connects the nested Dirac bands with Al 3$p_{x}$ and 3$p_{y}$ orbitals. Supplemented by second harmonic generation measurements, we show that the CDW induced lattice distortions break all vertical and diagonal mirrors whereas the four-fold rotational symmetry is retained below the CDW transition. Our observations strongly suggest a chiral CDW in EuAl$_4$ and highlight the TPT as a new avenue for chiral quantum states.
format Preprint
id arxiv_https___arxiv_org_abs_2410_10539
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Incommensurate Transverse Peierls Transition
Yang, F. Z.
Luo, K. F.
Zhang, Weizhe
Guo, Xiaoyu
Meier, W. R.
Ni, H.
Li, H. X.
Lozano, P. Mercado
Fabbris, G.
Said, A. H.
Nelson, C.
Zhang, T. T.
May, A. F.
McGuire, M. A.
Juneja, R.
Lindsay, L.
Lee, H. N.
Zuo, J. -M.
Chi, M. F.
Dai, X.
Zhao, Liuyan
Miao, H.
Strongly Correlated Electrons
In one-dimensional quantum materials, conducting electrons and the underlying lattices can undergo a spontaneous translational symmetry breaking, known as Peierls transition. For nearly a century, the Peierls transition has been understood within the paradigm of electron-electron interactions mediated by longitudinal acoustic phonons. This classical picture has recently been revised in topological semimetals, where transverse acoustic phonons can couple with conducting p-orbital electrons and give rise to an unconventional Fermi surface instability, dubbed the transverse Peierls transition (TPT). Most interestingly, the TPT induced lattice distortions can further break rotation or mirror/inversion symmetries, leading to nematic or chiral charge density waves (CDWs). Quantum materials that host the TPT, however, have not been experimentally established. Here, we report the experimental discovery of an incommensurate TPT in the tetragonal Dirac semimetal EuAl$_4$. Using inelastic x-ray scattering with meV resolution, we observe the complete softening of a transverse acoustic phonon at the CDW wavevector upon cooling, whereas the longitudinal acoustic phonon is nearly unchanged. Combining with first principles calculations, we show that the incommensurate CDW wavevector matches the calculated charge susceptibility peak and connects the nested Dirac bands with Al 3$p_{x}$ and 3$p_{y}$ orbitals. Supplemented by second harmonic generation measurements, we show that the CDW induced lattice distortions break all vertical and diagonal mirrors whereas the four-fold rotational symmetry is retained below the CDW transition. Our observations strongly suggest a chiral CDW in EuAl$_4$ and highlight the TPT as a new avenue for chiral quantum states.
title Incommensurate Transverse Peierls Transition
topic Strongly Correlated Electrons
url https://arxiv.org/abs/2410.10539