Raman fingerprint of two terahertz spin wave branches in a two-dimensional honeycomb Ising ferromagnet

Рамановский отпечаток двух ветвей терагерцевых спиновых волн в двумерном гексагональном ферромагнетике Изинга
Rui He, Zhipeng Ye, Bowen Yang, Kai Sun, Hyun Ho Kim, Liuyan Zhao, Adam W. Tsen, Hechang Lei, Shangjie Tian, Wencan Jin, Siwen Li, Pouyan Rezaie, Fabian Diaz, Saad Siddiq, Eric Wauer, Chenghe Li
2018-11-26

2D magnetismCrI3 honeycomb ferromagnetpolarized micro-Raman spectroscopysurface spin wavesterahertz spin-wave branches
Abstract Two-dimensional (2D) magnetism has been long sought-after and only very recently realized in atomic crystals of magnetic van der Waals materials. So far, a comprehensive understanding of the magnetic excitations in such 2D magnets remains missing. Here we report polarized micro-Raman spectroscopy studies on a 2D honeycomb ferromagnet CrI3. We show the definitive evidence of two sets of zero-momentum spin waves at frequencies of 2.28 terahertz (THz) and 3.75 THz, respectively, that are three orders of magnitude higher than those of conventional ferromagnets. By tracking the thickness dependence of both spin waves, we reveal that both are surface spin waves with lifetimes an order of magnitude longer than their temporal periods. Our results of two branches of high-frequency, long-lived surface spin waves in 2D CrI3 demonstrate intriguing spin dynamics and intricate interplay with fluctuations in the 2D limit, thus opening up opportunities for ultrafast spintronics incorporating 2D magnets.
1
Polarized micro-Raman spectroscopy provides definitive evidence of two zero-momentum spin-wave branches in two-dimensional honeycomb ferromagnet CrI3.
2
The observed high-frequency, long-lived spin waves reveal distinctive two-dimensional magnetic dynamics and potential for ultrafast spintronics.
3
The surface spin waves have lifetimes an order of magnitude longer than their temporal periods, indicating long-lived high-frequency spin dynamics.
4
The two spin-wave branches occur at frequencies of 2.28 THz and 3.75 THz, approximately three orders of magnitude higher than conventional ferromagnets.
5
Thickness-dependent measurements show that both branches are surface spin waves in CrI3.

Two-dimensional honeycomb ferromagnet CrI3

Two branches of zero-momentum high-frequency surface spin waves, including their frequencies, thickness dependence, lifetimes, and spin dynamics in the 2D limit

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2018-11-26
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Rui He
Zhipeng Ye
Bowen Yang
Kai Sun
Hyun Ho Kim
Liuyan Zhao
Adam W. Tsen
Hechang Lei
Shangjie Tian
Wencan Jin
Siwen Li
Pouyan Rezaie
Fabian Diaz
Saad Siddiq
Eric Wauer
Chenghe Li
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