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Spin Relaxation Times of Single-Wall Carbon Nanotubes
- Source :
- Physical Review B 88, 041401(R) (2013)
- Publication Year :
- 2011
-
Abstract
- We have measured temperature ($T$)- and power-dependent electron spin resonance in bulk single-wall carbon nanotubes to determine both the spin-lattice and spin-spin relaxation times, $T_1$ and $T_2$. We observe that $T_1^{-1}$ increases linearly with $T$ from 4 to 100 K, whereas $T_2^{-1}$ {\em decreases} by over a factor of two when $T$ is increased from 3 to 300 K. We interpret the $T_1^{-1} \propto T$ trend as spin-lattice relaxation via interaction with conduction electrons (Korringa law) and the decreasing $T$ dependence of $T_2^{-1}$ as motional narrowing. By analyzing the latter, we find the spin hopping frequency to be 285 GHz. Last, we show that the Dysonian lineshape asymmetry follows a three-dimensional variable-range hopping behavior from 3 to 20 K; from this scaling relation, we extract a localization length of the hopping spins to be $\sim$100 nm.<br />Comment: 6 pages, 3 figures
Details
- Database :
- arXiv
- Journal :
- Physical Review B 88, 041401(R) (2013)
- Publication Type :
- Report
- Accession number :
- edsarx.1105.5095
- Document Type :
- Working Paper
- Full Text :
- https://doi.org/10.1103/PhysRevB.88.041401