arXiv · cond-mat/0201166
First Order Transition in the Spin Dynamics of Geometrically Frustrated Yb2Ti2O7
Abstract
Using neutron diffraction, 170Yb Mossbauer and muSR spectroscopies, we have examined the pyrochlore Yb2Ti2O7 where the Yb3+ S'=1/2 ground state has planar anisotropy. Below ~0.24K, the temperature of the known specific heat lambda transition, there is no long range magnetic order. We show that the transition corresponds to a first order change in the fluctuation rate of the Yb3+ spins. Above the transition temperature, the rate, in the GHz range, follows a thermal excitation law, whereas below, the rate, in the MHz range, is essentially temperature independent indicative of a quantum fluctuation regime.
Explore related subjects
Keep this discovery
J. A. Hodges, P. Bonville, A. Forget, A. Yaouanc, P. Dalmas de Reotier, G. Andre, M. Rams, K. Krolas, C. Ritter, P. C. M. Gubbens, C. T. Kaiser, P. J. C. King, C. Baines. 2002-01-11. First Order Transition in the Spin Dynamics of Geometrically Frustrated Yb2Ti2O7. https://doi.org/10.1103/physrevlett.88.077204
Cite the original work for its findings. Save a collection to share your selection of sources.