Fascinating interplay between Charge Density Wave Order and magnetic field in Non-magnetic Rare-Earth Tritelluride LaTe$_{3}$
Arnab Pariari, Sudipta Koley, Shubhankar Roy, Ratnadwip Singha, Mukul, S. Laad, A. Taraphder, and Prabhat Mandal

TL;DR
This study reveals how magnetic fields influence charge density wave states and electronic structures in LaTe$_{3}$, uncovering rare phenomena and suggesting new ways to tune CDW properties in non-magnetic materials.
Contribution
It combines magnetotransport experiments with first-principles calculations to demonstrate magnetic field-induced modifications of CDW states and electronic structures in LaTe$_{3}$, a non-magnetic tritelluride.
Findings
Observation of hump-like resistivity features under magnetic field
Highly anisotropic large transverse magnetoresistance
High carrier mobility comparable to topological semimetals
Abstract
Charge density wave (CDW) states in solids bear an intimate connection to underlying fermiology. Modification of the latter by a suitable perturbation provides an attractive handle to unearth novel CDW states. Here, we combine extensive magnetotransport experiments and first-principles electronic structure calculations on a non-magnetic tritelluride LaTe single crystal to uncover phenomena rare in CDW systems: hump-like feature in the temperature dependence of resistivity at low temperature under application of magnetic field, which moves to higher temperature with increasing field strength, highly anisotropic large transverse magnetoresistance (MR) upon rotation of magnetic field about current parallel to crystallographic c-axis, (iii) anomalously large positive MR with spike-like peaks at characteristic angles when the angle between current and field is varied in…
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Taxonomy
Topics2D Materials and Applications · Topological Materials and Phenomena · Organic and Molecular Conductors Research
