Considerations for ab-initio based thermal conductivity prediction of ThO2
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Reference22 articles.
1. Matthew S. Bryan, Lyuwen Fu, Karl Rickert, David Turner, Timothy A. Prusnick, J. Matthew Mann, Douglas L. Abernathy, Chris A. Marianetti, and Michael E. Manley, Nonlinear propagating modes beyond the phonons in fluorite-structured crystals, 3, no. 1, 1-7, Number: 1 Publisher: Nature Publishing Group.
2. Cody A. Dennett, W. Ryan Deskins, Marat Khafizov, Zilong Hua, Amey Khanolkar, Kaustubh Bawane, Lyuwen Fu, J. Matthew Mann, Chris A. Marianetti, Lingfeng He, David H. Hurley, and Anter El-Azab, An integrated experimental and computational investigation of defect and microstructural effects on thermal transport in thorium dioxide, Acta Materialia 213 (2021), 116934 (en).
3. W. Ryan Deskins, Amey Khanolkar, Sanjoy Mazumder, Cody A. Dennett, Kaustubh Bawane, Zilong Hua, Joshua Ferrigno, Lingfeng He, J. Matthew Mann, Marat Khafizov, David H. Hurley, and Anter El-Azab, A combined theoretical-experimental investigation of thermal transport in low-dose irradiated thorium dioxide, Acta Materialia 241 (2022), 118379 (en).
4. Martin T. Dove, Introduction to lattice dynamics, Cambridge Topics in Mineral Physics and Chemistry, Cambridge University Press, 1993.
5. P Giannozzi, O Andreussi, T Brumme, O Bunau, M Buongiorno Nardelli, M Calandra, R Car, C Cavazzoni, D Ceresoli, M Cococcioni, N Colonna, I Carnimeo, A Dal Corso, S de Gironcoli, P Delugas, R A DiStasio, A Ferretti, A Floris, G Fratesi, G Fugallo, R Gebauer, U Gerstmann, F Giustino, T Gorni, J Jia, M Kawamura, H-Y Ko, A Kokalj, E Kucukbenli, M Lazzeri, M Marsili, N Marzari, F Mauri, N L Nguyen, H-V Nguyen, A Otero de-la Roza, L Paulatto, S Ponce, D Rocca, R Sabatini, B Santra, M Schlipf, A P Seitsonen, A Smogunov, I Timrov, T Thonhauser, P Umari, N Vast, X Wu, and S Baroni, Advanced capabilities for materials modelling with quantum ESPRESSO, Journal of Physics: Condensed Matter 29 (2017), no. 46, 465901.
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