English

Low loss spin wave resonances in organic-based ferrimagnet vanadium tetracyanoethylene thin films

Mesoscale and Nanoscale Physics 2016-09-21 v2

Abstract

We experimentally demonstrate high quality factor spin wave resonances in an encapsulated thin film of the organic-based ferrimagnet vanadium tetracyanoethylene (V[TCNE]x 2_\textit{x~2}) coated on an a-plane sapphire substrate by low temperature chemical vapor deposition. The thickness standing wave modes are observed in a broad frequency range (1 GHz ~ 5 GHz) with high quality factor exceeding 3,200 in ambient air at room temperature, rivaling those of inorganic magnetic materials. The exchange constant of V[TCNE]x 2_\textit{x~2}, a crucial material parameter for future study and device design of the V[TCNE]x 2_\textit{x~2}, is extracted from the measurement with a value of (4.61±0.35)×1016m2(4.61\pm 0.35)\times 10^{-16} \mathrm{\: m^{2}}. Our result establishes the feasibility of using organic-based materials for building hybrid magnonic devices and circuits.

Keywords

Cite

@article{arxiv.1607.03041,
  title  = {Low loss spin wave resonances in organic-based ferrimagnet vanadium tetracyanoethylene thin films},
  author = {Na Zhu and Xufeng Zhang and I. H. Froning and Michael E. Flatté and E. Johnston-Halperin and Hong X. Tang},
  journal= {arXiv preprint arXiv:1607.03041},
  year   = {2016}
}

Comments

12 pages, 3 figures