磁单极子
旋转冰
物理
磁性
凝聚态物理
反铁磁性
准粒子
自旋电子学
自旋(空气动力学)
铁磁性
量子力学
超导电性
热力学
作者
Matthew Pearce,K. Götze,Attila Szabó,Tycho Sikkenk,M. R. Lees,A. T. Boothroyd,D. Prabhakaran,Claudio Castelnovo,Paul Goddard
标识
DOI:10.1038/s41467-022-27964-y
摘要
Abstract Magnetically frustrated systems provide fertile ground for complex behaviour, including unconventional ground states with emergent symmetries, topological properties, and exotic excitations. A canonical example is the emergence of magnetic-charge-carrying quasiparticles in spin-ice compounds. Despite extensive work, a reliable experimental indicator of the density of these magnetic monopoles is yet to be found. Using measurements on single crystals of Ho 2 Ir 2 O 7 combined with dipolar Monte Carlo simulations, we show that the isothermal magnetoresistance is highly sensitive to the monopole density. Moreover, we uncover an unexpected and strong coupling between the monopoles on the holmium sublattice and the antiferromagnetically ordered iridium ions. These results pave the way towards a quantitative experimental measure of monopole density and demonstrate the ability to control antiferromagnetic domain walls using a uniform external magnetic field, a key goal in the design of next-generation spintronic devices.
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