Novel structure in the Mo1-xWxTe2 family
ORAL
Abstract
Mo1-xWxTe2 belongs to the family of 2-dimensional transition metal dichalcogenides that are of wide interest because of their fascinating topological properties. Mo1-xWxTe2 undergoes a structural phase transition from the monoclinic 1T' phase at high temperatures, to the orthorhombic Td phase at low temperatures through a first-order structural phase transition. Both phases consist of nearly-identical layers which differ primarily by the layers' in-plane positioning. With elastic neutron scattering, we study the transition between these two structures on single crystals of MoTe2 with and without W-doping. Structural changes including changes in interlayer disorder were observed from the elastic scattering along (2, 0, L) on cooling and warming through the hysteresis. We observed a thus far unreported unit cell doubling phase, Td*, that emerges without disorder on warming from Td, and deduced its layer stacking pattern as 'AABB' rather than the 'ABAB' and 'AAAA' orders for the 1T' and Td phases. We describe the transition in terms of a 1-dimensional Ising model whose interaction coefficients change with temperature. These results clarify in microscopic detail the nature of these phase transitions.
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Presenters
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Yu Tao
University of Virginia
Authors
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Yu Tao
University of Virginia
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John Schneeloch
Physics, University of Virginia, Brookhaven National Lab, Brookhaven National Laboratory, University of Virginia
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Chunruo Duan
University of Virginia
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Masaaki Matsuda
Neutron Sciences Directorate, Oak Ridge National Laboratory, Oak Ridge National Laboratory, Neutron Science Directorate, Oak Ridge National Laboratory, Oak Ridge National Lab
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Sachith Dissanayake
Department of Physics, Duke University, Oak Ridge National Laboratory, Duke University, Oak Ridge National Lab
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Despina Louca
Physics, University of Virginia, University of Virginia