Piezomagnetic switching and complex phase equilibria in uranium dioxide
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M. Salamon | S. Gruner | A. Saúl | C. Stanek | B. Lavina | J. Ruff | K. Shanks | T. Durakiewicz | D. Andersson | K. Gofryk | M. Jaime | D. Antonio | James L. D. Smith | T. Swinburne | Z. Islam | D. Koury | K. Shrestha | J. T. Weiss
[1] E. Bauer,et al. Magnetoelastics of High Field Phenomena in Antiferromagnets UO2 and CeRhIn5 , 2018, 2018 16th International Conference on Megagauss Magnetic Field Generation and Related Topics (MEGAGAUSS).
[2] A. Mihai,et al. Giant Piezomagnetism in Mn3NiN. , 2018, ACS applied materials & interfaces.
[3] L. Fleet. In rare form , 2017, Nature Physics.
[4] M. Salamon,et al. Piezomagnetism and magnetoelastic memory in uranium dioxide , 2017, Nature Communications.
[5] D. Pines. Emergent behavior in strongly correlated electron systems , 2016, Reports on progress in physics. Physical Society.
[6] L. Tjeng,et al. Correlation between ground state and orbital anisotropy in heavy fermion materials , 2015, Proceedings of the National Academy of Sciences.
[7] A. Borovik-romanov. PIEZOMAGNETISM IN THE ANTIFERROMAGNETIC FLUORIDES OF COBALT AND MANGANESE , 2015 .
[8] J. L. Smith,et al. Anisotropic thermal conductivity in uranium dioxide , 2014, Nature Communications.
[9] S. Conradson,et al. Ultrafast Photoemission Spectroscopy of the Uranium Dioxide UO 2 Mott Insulator: Evidence for a Robust Energy Gap Structure , 2014 .
[10] Hugh T. Philipp,et al. A Medium-Format, Mixed-Mode Pixel Array Detector for Kilohertz X-ray Imaging , 2013 .
[11] P. Canfield,et al. A single-solenoid pulsed-magnet system for single-crystal scattering studies. , 2011, The Review of scientific instruments.
[12] P. Santini,et al. Multipolar, magnetic, and vibrational lattice dynamics in the low-temperature phase of uranium dioxide , 2011, 1312.5113.
[13] C. Kuo,et al. Electrically controllable spontaneous magnetism in nanoscale mixed phase multiferroics. , 2011, Nature communications.
[14] P. Santini,et al. Quadrupolar waves in uranium dioxide. , 2010, Physical review letters.
[15] W. Kanda,et al. Numerical simulation of piezomagnetic changes associated with hydrothermal pressurization and its application to volcanomagnetic variations observed at Merapi Volcano (地球電磁気学の諸問題) , 2010 .
[16] P. Santini,et al. Multipolar interactions in f -electron systems: The paradigm of actinide dioxides , 2009 .
[17] G. Laan,et al. Nature of the 5f states in actinide metals , 2008, 0807.0416.
[18] Daemon Atman,et al. In Rare Form , 2006 .
[19] J. L. Sarrao,et al. Plutonium-based superconductivity with a transition temperature above 18 K , 2002, Nature.
[20] V. V. Tarakanov. Some remarks on the problem of piezomagnetism , 2000 .
[21] J. Baruchel,et al. PIEZOMAGNETISM AND DOMAINS IN MnF2 , 1988 .
[22] P. Erdös,et al. Theoretical analysis of the 3-k magnetic structure and distortion of uranium dioxide , 1987 .
[23] T. Henyey,et al. On the Measurement of Stress Sensitivity of NRM Using a Cryogenic Magnetometer , 1978 .
[24] R. Carmichael. Depth calculation of piezomagnetic effect for earthquake prediction , 1977 .
[25] G. White,et al. The thermal expansion at low temperatures of UO2 and UO2/ThO2 , 1974 .
[26] C. T. Walker,et al. Temperature Dependence of Elastic Constants and Thermal Expansion for UO2 , 1967 .
[27] G. A. Slack,et al. Crystallography and Domain Walls in Antiferromagnetic NiO Crystals , 1960 .
[28] I. E. Dzialoshinskii. The Problem of Piezomagnetism , 1958 .