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Our group is focused on the design and discovery of new quantum materials using a broad range of crystal growth techniques, including metallic flux, vapour transport, high-pressure synthesis, and floating zone growth. We are particularly interested in establishing structure-function relationships in quantum materials via characterization of their structural, magnetic, and electronic behaviours in order to facilitate the targeted design of materials with novel or useful properties. This research is performed in our state-of-the-art crystal growth laboratories at the Quantum Matter Institute as well as international neutron scattering and muon spin relaxation user facilities.
Research Interests
Papers共 49 篇Author StatisticsCo-AuthorSimilar Experts
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Solveig S. Aamlid,Sam Mugiraneza, Mario U. González-Rivas,Graham King,Alannah M. Hallas,Jörg Rottler
arxiv(2024)
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Macy Stavinoha,C. -L. Huang,W. Adam Phelan,Alannah M. Hallas, V. Loganathan,M. Michiardi, J. Falke,Sergey Zhdanovich, D. Takegami, C. -E. Liu, K. D. Tsuei,C. T. Chen,
PHYSICAL REVIEW Bno. 3 (2024)
Alexandra Cote,J. Eddie Slimak,Astha Sethi,Dalmau Reig-i-Plessis, Qiang Zhang,Yang Zhao, Devashibhai Adroja, Gerald Morris,Taras Kolodiazhnyi,Alannah M. Hallas,Jeffrey W. Lynn,S. Lance Cooper,
arXiv (Cornell University) (2023)
COMMUNICATIONS MATERIALSno. 1 (2023)
Neutron Newsno. 1 (2023): 2-9
JOURNAL OF APPLIED CRYSTALLOGRAPHYno. 4 (2023): 1192-1199
Mohamed Oudah,Hsiang-Hsi Kung, Samikshya Sahu, Niclas Heinsdorf,Armin Schulz, Kai Philippi, Marta-Villa De Toro Sanchez,Yipeng Cai,Kenji Kojima,Andreas P. Schnyder,Hidenori Takagi,Bernhard Keimer,
arxiv(2023)
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