R
Ross H. McKenzie
Researcher at University of Queensland
Publications - 231
Citations - 7759
Ross H. McKenzie is an academic researcher from University of Queensland. The author has contributed to research in topics: Hubbard model & Magnetoresistance. The author has an hindex of 49, co-authored 228 publications receiving 7100 citations. Previous affiliations of Ross H. McKenzie include University of New South Wales & Universidade Federal do Rio Grande do Sul.
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Nuclear Quantum Effects in Water and Aqueous Systems: Experiment, Theory, and Current Challenges
Michele Ceriotti,Wei Fang,Peter G. Kusalik,Ross H. McKenzie,Angelos Michaelides,Miguel A. Morales,Thomas E. Markland +6 more
TL;DR: The latest major developments in simulation algorithms and theory that have enabled the efficient inclusion of nuclear quantum effects in molecular simulations, permitting their combination with on-the-fly evaluation of the potential energy surface using electronic structure theory are reviewed.
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Similarities between organic and cuprate superconductors
TL;DR: McKenzie as mentioned in this paper discusses this question in his Perspective and reviews recent theoretical and experimental progress, showing that organic superconductors have a highly unconventional metallic state and exhibit much the same physics as the cuprates.
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Quantum frustration in organic Mott insulators: from spin liquids to unconventional superconductors
Ben Powell,Ross H. McKenzie +1 more
TL;DR: In this article, the interplay of frustration and strong electronic correlations in quasi-two-dimensional organic charge transfer salts, such as (BEDT-TTF)2X and EtnMe4−nPn[Pd(dmit)2]2] has been discussed.
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Condensed matter physics - Similarities between organic and cuprate superconductors
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Quantum frustration in organic Mott insulators: from spin liquids to unconventional superconductors
Ben Powell,Ross H. McKenzie +1 more
TL;DR: In this paper, the interplay of frustration and strong electronic correlations in quasi-two-dimensional organic charge transfer salts, such as k-(BEDT-TTF)_2X and Et_nMe_{4-n}Pn[Pd(dmit)2]2]