Unconventional spin freezing and fluctuations in the frustrated antiferromagnet NiGa2S4
arXiv:0811.1057 · doi:10.1103/PhysRevB.78.220403
Abstract
Muon spin rotation (muSR) experiments reveal unconventional spin freezing and dynamics in the two-dimensional (2D) triangular lattice antiferromagnet NiGa2S4. Long-lived disordered Ni-spin freezing (correlation time > 10-6 s at 2 K) sets in below T_f = 8.5 +- 0.5 K with a mean-field-like temperature dependence. The observed exponential temperature dependence of the muon spin relaxation above T_f is strong evidence for 2D critical spin fluctuations. Slow Ni spin fluctuations coexist with quasistatic magnetism at low temperatures but are rapidly suppressed for fields > 10 mT, in marked contrast with the field-independent specific heat. The muSR and bulk susceptibility data indicate a well-defined 2D phase transition at T_f, below which NiGa2S4 is neither a conventional magnet nor a singlet spin liquid.
5 pages, 4 figures, to be published in Phys. Rev. B
References in corpus (6)
- The quadrupolar phases of the S=1 bilinear-biquadratic Heisenberg model on the triangular lattice
- Unconventional Dynamics in Triangular Heisenberg Antiferromagnet NaCrO2
- Magnetic density of states at low energy in geometrically frustrated systems
- Spin dynamics and spin freezing behavior in the two-dimensional antiferromagnet NiGaS revealed by Ga-NMR, NQR and SR measurements
- Vortex-induced topological transition of the bilinear-biquadratic Heisenberg antiferromagnet on the triangular lattice
- Short-range magnetic ordering process for the triangular lattice compound NiGa2S4: a positive muon spin rotation and relaxation study