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CoTe 2 : A Quantum Critical Dirac Metal with Strong Spin Fluctuations.

Peter E SiegfriedHari BhandariJeanie QiRojila GhimireJayadeep JoshiZachary T MessegeeWillie B BeesonKai LiuMadhav Prasad GhimireYanliu DangHuairuo ZhangAlbert V DavydovXiaoyan TanPatrick M VoraIgor I MazinNirmal J Ghimire
Published in: Advanced materials (Deerfield Beach, Fla.) (2023)
Quantum critical points separating weak ferromagnetic and paramagnetic phases trigger many novel phenomena. Dynamical spin fluctuations not only suppress the long-range order, but can also lead to unusual transport and even superconductivity. Combining quantum criticality with topological electronic properties presents a rare and unique opportunity. Here, by means of ab initio calculations and magnetic, thermal, and transport measurements, it is shown that the orthorhombic CoTe 2 is close to ferromagnetism, which appears suppressed by spin fluctuations. Calculations and transport measurements reveal nodal Dirac lines, making it a rare combination of proximity to quantum criticality and Dirac topology.
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