Post-growth purification of Co nanostructures prepared by focused electron beam induced deposition
arXiv:1504.01945 · doi:10.1088/0957-4484/26/7/075301
Abstract
In the majority of cases nanostructures prepared by focused electron beam induced deposition (FEBID) employing an organometallic precursor contain predominantly carbon-based ligand dissociation products. This is unfortunate with regard to using this high-resolution direct-write approach for the preparation of nanostructures for various fields, such as mesoscopic physics, micromagnetism, electronic correlations, spin-dependent transport and numerous applications. Here we present an in-situ cleaning approach to obtain pure Co-FEBID nanostructures. The purification procedure lies in the exposure of heated samples to a H atmosphere in conjunction with the irradiation by low-energy electrons. The key finding is that the combination of annealing at C, H exposure and electron irradiation leads to compact, carbon- and oxygen free Co layers down to a thickness of about 20\,nm starting from as-deposited Co-FEBID structures. In addition to this, in temperature-dependent electrical resistance measurements on post-processed samples we find a typical metallic behavior. In low-temperature magneto-resistance and Hall effect measurements we observe ferromagnetic behavior.
References in corpus (2)
Cited by in corpus (7)
- Focused electron beam induced deposition meets materials science
- Supersonic dynamics of guided magnetic flux quanta
- Abrikosov fluxonics in washboard nanolandscapes
- Tunable magnetism on the lateral mesoscale by post-processing of Co/Pt heterostructures
- Pinning effects on self-heating and flux-flow instability in superconducting films near
- Transmission XMCD-PEEM imaging of an engineered vertical FEBID cobalt nanowire with a domain wall
- Engineered magnetization and exchange stiffness in direct-write Co-Fe nanoelements