Nonreciprocal Spin Waves in a Magnonic Crystal with In-Plane Static Magnetization

Author:

Verba Roman1ORCID,Bankowski Elena2,Meitzler Thomas2,Tiberkevich Vasil3,Slavin Andrei3

Affiliation:

1. Institute of Magnetism, 36-b Vernadskogo blvd., Kyiv 03680, Ukraine

2. U. S. Army TARDEC, 6501 E. 11 Mile road, Warren, Michigan 48397, USA

3. Department of Physics, Oakland University, 2200 N. Squirrel road, Rochester, MI 48309, USA

Abstract

It is shown that spin waves propagating in a planar periodic array of dipolarly coupled magnetic strips or dots with in-plane static magnetization can be nonreciprocal. The conditions of the spin waves nonreciprocity are: (i) breaking of the mirror symmetry of an array with respect to its plane, and (ii) complex structure of the array lattice. These conditions can be satisfied, e.g., if an array consists of at least two groups of strips (dots) having different thicknesses (heights). The largest nonreciprocity can be achieved if the static magnetic state of an array is antiferromagnetic, and the difference in the strip thicknesses is about two times. A significant dependence of the spin wave nonreciprocity on the static magnetic state of a strip array allows one to create magnonic crystals with reconfigurable nonreciprocal properties.

Funder

National Science Foundation

Tank Automotive Research, Development and Engineering Center

Ministry of Education and Science of Ukraine

Publisher

World Scientific Pub Co Pte Lt

Subject

Electrical and Electronic Engineering,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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