Magnetic switching of nanoscale antidot lattices

Beilstein J Nanotechnol. 2016 May 24:7:733-50. doi: 10.3762/bjnano.7.65. eCollection 2016.

Abstract

We investigate the rich magnetic switching properties of nanoscale antidot lattices in the 200 nm regime. In-plane magnetized Fe, Co, and Permalloy (Py) as well as out-of-plane magnetized GdFe antidot films are prepared by a modified nanosphere lithography allowing for non-close packed voids in a magnetic film. We present a magnetometry protocol based on magneto-optical Kerr microscopy elucidating the switching modes using first-order reversal curves. The combination of various magnetometry and magnetic microscopy techniques as well as micromagnetic simulations delivers a thorough understanding of the switching modes. While part of the investigations has been published before, we summarize these results and add significant new insights in the magnetism of exchange-coupled antidot lattices.

Keywords: Kerr microscopy; X-ray microscopy; antidot lattice; first-order reversal curves; magnetic nanostructures; magnetic switching; micromagnetic simulations; plasma etching; spin ice.