Spin wave dispersion relation engineering by magnonic crystals with arbitrary symmetry

Author:

García Jomaso Yesenia Angélica1ORCID,Ley Dominguez David1ORCID,Peña Espinoza Francisco Javier1ORCID,Mendoza Sandoval Elizabeth1ORCID,Reyes Almanza Arturo1ORCID,Qureshi Naser2ORCID,Ordóñez-Romero César Leonardo1ORCID,Pirruccio Giuseppe1ORCID

Affiliation:

1. Instituto de Física, Universidad Nacional Autónoma de México 1 , Apartado Postal 20-364, Ciudad de México C.P. 01000, Mexico

2. ICAT, Universidad Nacional Autónoma de México, CU 2 , México CDMX 04510, Mexico

Abstract

The use of metasurfaces to engineer the response of magnetic materials is of utmost importance in the field of magnon-spintronics. Here, we demonstrate a method to fabricate one- and two-dimensional magnonic crystals with arbitrary symmetry and use it to engineer the amplitude-frequency characteristic of magnetostatic surface spin waves excited in a magnetic material. The technique is based on the gentle microablation of the sample surface by focused femtosecond laser pulses. Tightly focused illumination allows using modest pulse energy while achieving micrometer precision. By raster scanning the incident laser spot on the sample surface, we control the shape and size of the building blocks constituting the unit cell of the crystal along with its symmetry and lattice parameter. Remarkable and controlled changes in the measured transmission characteristics reveal the strong and complex symmetry-dependent interaction of the spin waves with Bravais and non-Bravais lattices. The described single-step microfabrication method facilitates and speeds up the realization of integrated spintronics components and provides an efficient tool to explore complex magnetic dynamics in scattering lattices.

Funder

Consejo Nacional de Ciencia y Tecnología

Dirección General de Asuntos del Personal Académico, Universidad Nacional Autónoma de México

Publisher

AIP Publishing

Subject

General Physics and Astronomy

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