Emergence of a hidden-order phase well below the charge density wave transition in a topological Weyl semimetal (TaSe)I
arXiv:2512.17433 · doi:10.1103/cds9-pnfr
Abstract
The emergence of a charge density wave (CDW) in a Weyl semimetal -- a correlated topological phase, is exceptionally rare in condensed matter systems. In this context, the quasi-one-dimensional type-III Weyl semimetal (TaSe)I undergoes a CDW transition at ~K, providing an exceptional platform to investigate correlated topological CDW states. Here, we uncover an additional hidden-order phase transition at K, well below the CDW onset, using low-frequency resistance noise spectroscopy, electrical transport, and thermoelectric measurements. This transition is characterized by a sharp enhancement in the noise exponent () and variance of resistance fluctuations. Analysis of higher-order statistics of resistance fluctuations reveals the correlated dynamics underlying the transition. A pronounced anomaly in the Seebeck coefficient near further suggests a Fermi surface reconstruction. First-principles calculations reveal a structural distortion from the high-symmetry phase to a low-symmetry phase, via an intermediate symmetry. This leads to renormalization of the electronic structure near the Fermi level and opening of a bandgap in the hidden-order phase. These findings demonstrate a previously unidentified correlated phase transition in the topological CDW-Weyl semimetal (TaSe)I, enriching the phase diagram of this material and establishing it as an ideal platform for studying intertwined electronic and structural orders.
15 pages including 11 figures (6 main and 5 supporting)
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