Generating high-order optical and spin harmonics from ferromagnetic monolayers

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作者
G. P. Zhang
M. S. Si
M. Murakami
Y. H. Bai
Thomas F. George
机构
[1] Indiana State University,Department of Physics
[2] Lanzhou University,Key Lab for Magnetism and Magnetic Materials of the Ministry of Education
[3] Indiana State University,Office of Information Technology
[4] Physics & Astronomy University of Missouri-St. Louis,Office of the Chancellor Departments of Chemistry & Biochemistry
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Nature Communications | / 9卷
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摘要
High-order harmonic generation (HHG) in solids has entered a new phase of intensive research, with envisioned band-structure mapping on an ultrashort time scale. This partly benefits from a flurry of new HHG materials discovered, but so far has missed an important group. HHG in magnetic materials should have profound impact on future magnetic storage technology advances. Here we introduce and demonstrate HHG in ferromagnetic monolayers. We find that HHG carries spin information and sensitively depends on the relativistic spin–orbit coupling; and if they are dispersed into the crystal momentum k space, harmonics originating from real transitions can be k-resolved and carry the band structure information. Geometrically, the HHG signal is sensitive to spatial orientations of monolayers. Different from the optical counterpart, the spin HHG, though probably weak, only appears at even orders, a consequence of SU(2) symmetry. Our findings open an unexplored frontier—magneto-high-order harmonic generation.
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