Monovacancy paramagnetism in neutron-irradiated graphite probed by C NMR
arXiv:1707.03748 · doi:10.1088/1361-648X/aa8d47
Abstract
We report on the magnetic properties of monovacancy defects in neutron-irradiated graphite, probed by C nuclear magnetic resonance spectroscopy. The bulk paramagnetism of the defect moments is revealed by the temperature dependence of the NMR frequency shift and spectral linewidth, both of which follow a Curie behavior, in agreement with measurements of the macroscopic magnetization. Compared to pristine graphite, the fluctuating hyperfine fields generated by the defect moments lead to an enhancement of the C nuclear spin-lattice relaxation rate by about two orders of magnitude. With an applied magnetic field of 7.1 T, the temperature dependence of below about 10 K can well be described by a thermally activated form, , yielding a singular Zeeman energy of () meV, in excellent agreement with the sole presence of polarized, non-interacting defect moments.
6 pages, 3 figures
References in corpus (17)
- Graphene Spintronics
- Magnetism in Graphene Induced by Single-Atom Defects
- Emergence of magnetism in graphene materials and nanostructures
- Induced Magnetic Ordering by Proton Irradiation in Graphite
- Room temperature magnetic order on zigzag edges of narrow graphene nanoribbons
- Atomic-scale control of graphene magnetism using hydrogen atoms
- Room-temperature ferromagnetism in graphite driven by 2D networks of point defects
- Magnetism in Disordered Graphene and Irradiated Graphite
- Magnetic Moment Formation in Graphene Detected by Scattering of Pure Spin Currents
- -Electron Ferromagnetism in Metal Free Carbon Probed by Soft X-Ray Dichroism
- A Defective Graphene Phase Predicted to be a Room Temperature Ferromagnetic Semiconductor
- A critical analysis of vacancy-induced magnetism in mono and bilayer graphene
- Quantum critical dynamics of a S = 1/2 antiferromagnetic Heisenberg chain studied by 13C-NMR spectroscopy
- Defect-induced magnetism in graphite through neutron irradiation
- Comment on: "Revealing common artifacts due to ferromagnetic inclusions in highly oriented pyrolytic graphite", by M. Sepioni, R.R. Nair, I.-Ling Tsai, A.K. Geim and I.V. Grigorieva, EPL 97 (2012) 47001
- Defect-induced magnetism in SiC probed by nuclear magnetic resonance
- Reply to Comment by D. Spemann et al [EPL 98 (2012) 57006, arXiv:1204.2992]