English

Spin pumping and inverse spin Hall effect in CoFeB/C$_{60}$ bilayers

Mesoscale and Nanoscale Physics 2021-11-09 v2 Materials Science

Abstract

Pure spin current based research is mostly focused on ferromagnet (FM)/heavy metal (HM) system. Because of the high spin orbit coupling (SOC) these HMs exhibit short spin diffusion length and therefore possess challenges for device application. Low SOC (elements of light weight) and large spin diffusion length make the organic semiconductors (OSCs) suitable for future spintronic applications. From theoretical model it is explained that, due to π\pi - σ\sigma hybridization the curvature of the C60_{60} molecules may increase the SOC strength. Here, we have investigated spin pumping and inverse spin hall effect (ISHE) in CoFeB/C60_{60} bilayer system using coplanar wave guide based ferromagnetic resonance (CPW-FMR) set-up. We have performed angle dependent ISHE measurement to disentangle the spin rectification effects for example anisotropic magnetoresistance, anomalous Hall effect etc. Further, effective spin mixing conductance (geff_{eff}^{\uparrow\downarrow}) and spin Hall angle (θSH\theta_{SH}) for C60_{60} have been reported here. The evaluated value for θSH\theta_{SH} is 0.055.

Keywords

Cite

@article{arxiv.2106.06829,
  title  = {Spin pumping and inverse spin Hall effect in CoFeB/C$_{60}$ bilayers},
  author = {Purbasha Sharangi and Braj Bhusan Singh and Sagarika Nayak and Subhankar Bedanta},
  journal= {arXiv preprint arXiv:2106.06829},
  year   = {2021}
}
R2 v1 2026-06-24T03:08:00.421Z