Bonding states underpinning structural transitions in IrTe$_2$ observed with micro-ARPES

Fuente: arXiv
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Main Authors: Nicholson, C. W., Watson, M. D., Pulkkinen, A., Rumo, M., Kremer, G., Ma, K. Y., von Rohr, F. O., Cacho, C., Monney, C.
Format: Preprint
Published: 2024
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author Nicholson, C. W.
Watson, M. D.
Pulkkinen, A.
Rumo, M.
Kremer, G.
Ma, K. Y.
von Rohr, F. O.
Cacho, C.
Monney, C.
author_facet Nicholson, C. W.
Watson, M. D.
Pulkkinen, A.
Rumo, M.
Kremer, G.
Ma, K. Y.
von Rohr, F. O.
Cacho, C.
Monney, C.
contents Competing interactions in low-dimensional materials can produce nearly degenerate electronic and structural phases. We investigate the staircase of structural phase transitions in layered IrTe$_2$ for which a number of potential transition mechanisms have been postulated. The spatial coexistence of multiple phases on the micron scale has prevented a detailed analysis of the electronic structure. By exploiting micro-ARPES obtained with synchrotron radiation we extract the electronic structure of the multiple structural phases in IrTe$_2$ in order to address the mechanism underlying the phase transitions. We find direct evidence of lowered energy states that appear in the low-temperature phases, states previously predicted by \textit{ab initio} calculations and extended here. Our results validate a proposed scenario of bonding and anti-bonding states as the driver of the phase transitions.
format Preprint
id arxiv_https___arxiv_org_abs_2407_09317
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Bonding states underpinning structural transitions in IrTe$_2$ observed with micro-ARPES
Nicholson, C. W.
Watson, M. D.
Pulkkinen, A.
Rumo, M.
Kremer, G.
Ma, K. Y.
von Rohr, F. O.
Cacho, C.
Monney, C.
Materials Science
Strongly Correlated Electrons
Competing interactions in low-dimensional materials can produce nearly degenerate electronic and structural phases. We investigate the staircase of structural phase transitions in layered IrTe$_2$ for which a number of potential transition mechanisms have been postulated. The spatial coexistence of multiple phases on the micron scale has prevented a detailed analysis of the electronic structure. By exploiting micro-ARPES obtained with synchrotron radiation we extract the electronic structure of the multiple structural phases in IrTe$_2$ in order to address the mechanism underlying the phase transitions. We find direct evidence of lowered energy states that appear in the low-temperature phases, states previously predicted by \textit{ab initio} calculations and extended here. Our results validate a proposed scenario of bonding and anti-bonding states as the driver of the phase transitions.
title Bonding states underpinning structural transitions in IrTe$_2$ observed with micro-ARPES
topic Materials Science
Strongly Correlated Electrons
url https://arxiv.org/abs/2407.09317