Spin excitations in the quasi-two-dimensional charge-ordered insulator -(BEDT-TTF)I probed via C NMR
arXiv:1609.01906 · doi:10.1103/PhysRevB.94.085154
Abstract
The spin excitations from the nonmagnetic charge-ordered insulating state of -(BEDT-TTF)I at ambient pressure have been investigated by probing the static and low-frequency dynamic spin susceptibilities via site-selective nuclear magnetic resonance at C sites. The site-dependent values of the shift and the spin-lattice relaxation rate below the charge-ordering transition temperature ( 135 K) demonstrate a spin density imbalance in the unit cell, in accord with the charge-density ratio reported earlier. The shift and show activated temperature dependence with a static (shift) gap 47-52 meV and a dynamic () gap 40 meV. The sizes of the gaps are well described in terms of a localized spin model, where spin one-half antiferromagnetic dimer chains are weakly coupled with each other.
22 pages, 7 figures, and 1 table
References in corpus (4)
- Tilted anisotropic Dirac cones in quinoid-type graphene and alpha-(BEDT-TTF)_2I_3
- Charge Ordering in alpha-(BEDT-TTF)2I3 by synchrotron x-ray diffraction
- Theoretical Aspects of Charge Ordering in Molecular Conductors
- Electronic Properties Close to Dirac Cone in Two-Dimensional Organic Conductor -(BEDT-TTF)I