Operation of a submicrometer waveguide cross as a spin-wave logic gate

Author:

Nikolaev K. O.1ORCID,Raskhodchikov D.2ORCID,Bensmann J.2ORCID,Lomonte E.3ORCID,Jin L.3ORCID,Schmidt R.2ORCID,Kern J.2ORCID,de Vasconcellos S. Michaelis2ORCID,Bratschitsch R.2ORCID,Demokritov S. O.1ORCID,Pernice W. H. P.34ORCID,Demidov V. E.1ORCID

Affiliation:

1. Institute of Applied Physics, University of Muenster 1 , 48149 Muenster, Germany

2. Institute of Physics and Center for Nanotechnology (CeNTech), University of Muenster 2 , 48149 Muenster, Germany

3. Center for Soft Nanoscience, University of Muenster 3 , 48149 Muenster, Germany

4. Kirchhoff-Institute for Physics, Heidelberg University 4 , 69120 Heidelberg, Germany

Abstract

In this experimental study, we explore the potential implementation of logic operations using the interference of propagating spin waves within a device composed of intersecting yttrium iron garnet waveguides with submicrometer width. Our investigation reveals the significant influence of finite-size effects on the performance of the microscopic devices. In particular, we observe that their efficiency depends on the wavelengths of the involved spin waves in relation to the size of the interference region and is reduced by multimode spin-wave propagation. These findings highlight crucial factors to be considered when designing magnonic nanodevices operating with short-wavelength spin waves, providing valuable insights for optimizing their performance in practical applications.

Funder

Deutsche Forschungsgemeinschaft

Publisher

AIP Publishing

Subject

Physics and Astronomy (miscellaneous)

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