NMR Study of Disordered Inclusions in the Quenched Solid Helium
arXiv:1107.0653 · doi:10.1007/s10909-012-0641-4
Abstract
Phase structure of rapidly quenched solid helium samples is studied by the NMR technique. The pulse NMR method is used for measurements of spin-lattice and spin-spin relaxation times and spin diffusion coefficient for all coexisting phases. It was found that quenched samples are two-phase systems consisting of the hcp matrix and some inclusions which are characterized by and values close to those in liquid phase. Such liquid-like inclusions undergo a spontaneous transition to a new state with anomalously short times. It is found that inclusions observed in both the states disappear on careful annealing near the melting curve. It is assumed that the liquid-like inclusions transform into a new state - a glass or a crystal with a large number of dislocations. These disordered inclusions may be responsible for the anomalous phenomena observed in supersolid region.
10 pages, 3 figures
References in corpus (6)
- Low Temperature Shear Modulus Changes in Solid 4-He and Connection to Supersolidity
- Evidence for a Superglass State in Solid 4He
- New Dissipation Relaxation Phenomenon in Oscillating Solid He-4
- Simultaneous Measurement of Torsional Oscillator and NMR of Very Dilute 3He in Solid 4He
- Fast Diffusion Process in Quenched hcp Dilute Solid He-He Mixture
- Effect of Crystal Quality on HCP-BCC Phase Transition in Solid 4He