Tuning of physical properties through chemical intercalation in two dimensional Fe<sub>x</sub>NbTe<sub>2</sub>
ORAL
Abstract
The layered materials with weak van der Waals interlayer interaction have created a rich platform to exhibit exotic properties such as charge density wave (CDW), topological properties, 2D magnetism, and superconductivity. NbTe2 is a layered materials with the same structure as 1Tâ WTe2 phase. It has a CDW transition above 550K, and meanwhile exhibits superconducting transition below 0.74K. By intercalation of magnetic iron atoms, we are expecting to observe the interplay among superconductivity, CDW and magnetism in this NbTe2 system. Indeed, through manipulation of the synthetic conditions, we observed drastic changes of crystal symmetry and physical properties in the same material FexNbTe2 with ground state from spin glass insulator to antiferromagnetic metal down to 2K, with more exotic magnetoresistivity and Hall behavior observed. The details of these results will be presented and the interplay of multiple orders in this system will be further elaborated.
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Presenters
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Sheng Li
- University of Texas at Dallas
- Physics, University of Texas at Dallas
- University of Texas, Dallas