Ferromagnetic resonators synthesized by metal-organic decomposition epitaxy

Author:

Nguyen NhatORCID,Herrington Bryce,Chorazewicz Kayetan,(Paul) Wang Szu-Fan,Zielinski Ruthi,Turner John,Ashby Paul DORCID,Kilic Ufuk,Schubert Eva,Schubert Mathias,Parrott Ronald A,Sweet Allen AORCID,Streubel RobertORCID

Abstract

Abstract Metal-organic decomposition epitaxy is an economical wet-chemical approach suitable to synthesize high-quality low-spin-damping films for resonator and oscillator applications. This work reports the temperature dependence of ferromagnetic resonances and associated structural and magnetic quantities of yttrium iron garnet nanofilms that coincide with single-crystal values. Despite imperfections originating from wet-chemical deposition and spin coating, the quality factor for out-of-plane and in-plane resonances approaches 600 and 1000, respectively, at room temperature and 40 GHz. These values increase with temperature and are 100 times larger than those offered by commercial devices based on complementary metal-oxide semiconductor voltage-controlled oscillators at comparable production costs.

Funder

Basic Energy Sciences

National Science Foundation

Publisher

IOP Publishing

Subject

Condensed Matter Physics,General Materials Science

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