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[en] Full text: I will discuss spin crossover materials, crystals composed of molecules with two thermodynamically accessible spin-states: one low-spin (LS) and the other high-spin (HS). I will show that frustrated magneto-elastic interactions can give rise to a new phase of matter: spin-state ice. The low-energy physics is described by an emergent divergence-less field with a gap to topological excitations that are deconned quasi-particles with spin fractionalized midway between the LS and HS spin. (author)
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Rachel, Stephan; McCallum, Jeff (School of Physics, University of Melbourne, Parkville, NSW (Australia)); Karel, Julie (Materials Science and Engineering, Monash University, Clayton, VIC (Australia)); Parish, Meera (School of Physics and Astronomy, Monash University, Clayton, VIC (Australia)); The Australian Institute of Physics, North Melbourne, VIC (Australia); New Zealand Institute of Physics (New Zealand); 96 p; Feb 2019; p. 20; 43. Annual condensed matter and materials meeting; Wagga Wagga, NSW (Australia); 5-8 Feb 2019; Available online from: http://aip.org.au/annual-cmm-meetings/; Also available online from: https://aip.org.au/wp-content/uploads/cmm/2019/Wagga_2019_Conference_Handbook.pdf; Abstract only, full text entered in this record.
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