Emerging Research Landscape of Altermagnetism
Новый исследовательский ландшафт альтермагнетизма
2022-12-08
SCID: 54.1/vknnrf5r
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altermagnetismantiparallel magnetic crystal orderd-wave magnetic phasespin polarizationtime-reversal symmetry breaking
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Abstract (AI)
Magnetism is one of the largest, most fundamental, and technologically most relevant fields of condensed-matter physics. Traditionally, two basic magnetic phases have been distinguished ferromagnetism and antiferromagnetism. The spin polarization in the electronic band structure reflecting the magnetization in ferromagnetic crystals underpins the broad range of time-reversal symmetry-breaking responses in this extensively explored and exploited type of magnets. By comparison, antiferromagnets have vanishing net magnetization. Recently, there have been observations of materials in which strong time-reversal symmetry-breaking responses and spin-polarization phenomena, typical of ferromagnets, are accompanied by antiparallel magnetic crystal order with vanishing net magnetization, typical of antiferromagnets. A classification and description based on spin-symmetry principles offers a resolution of this apparent contradiction by establishing a third distinct magnetic phase, dubbed altermagnetism. Our perspective starts with an overview of the still emerging unique phenomenology of this unconventional d-wave (or higher even-parity wave) magnetic phase, and of the wide array of altermagnetic material candidates. We illustrate how altermagnetism can enrich our understanding of overarching condensedmatter physics concepts and how it can have impact on prominent condensed-matter research areas.
Key Findings
1
A wide array of material candidates for altermagnetism is emerging, suggesting substantial experimental and materials research activity.
2
Altermagnetism can enrich understanding of condensed-matter concepts and impact prominent research areas by combining features of ferromagnets and antiferromagnets.
3
Altermagnetism is identified as a third distinct magnetic phase, separate from ferromagnetism and antiferromagnetism, based on spin-symmetry principles.
4
Altermagnets exhibit strong time-reversal symmetry-breaking responses and spin-polarization phenomena typical of ferromagnets while having antiparallel magnetic crystal order with vanishing net magnetization like antiferromagnets.
5
The altermagnetic order has unconventional d-wave (or higher even-parity wave) symmetry in its spin-polarization of the electronic band structure.
Research Object
Altermagnetic materials / the altermagnetic phase
Research Subject
The unique phenomenology, spin-symmetry classification, and time-reversal symmetry-breaking and spin-polarization responses of the altermagnetic (d-wave or higher even-parity) magnetic phase and its implications for condensed-matter physics
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2022-12-08
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