Solid Hydrogen: The Ideal Analog of an Antiferromagnet
- 15 March 1971
- journal article
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 42 (4) , 1574-1580
- https://doi.org/10.1063/1.1660352
Abstract
A physically meaningful analogy is drawn between the ordering and dynamical behavior of molecular rotations in solid hydrogen and the ordering and dynamical behavior of magnetic spin systems. In solid hydrogen the magnitude J of the rotational angular momentum is a good quantum number. Molecules having J = 1 resemble spin one magnetic moments, whereas those with J = 0 are ``non-magnetic.'' Solid solutions of these two species are analogs of magnetic alloys. The thermodynamic properties, in particular the order parameter, the specific heat, and the nuclear magnetic resonance properties are similar to those of magnetic systems. As for the dynamics, the small librations about the ground state are analogs of spin waves, and the interactions between the librational excitations are similar to, but larger than, the usual spin-wave interactions. This circumstance enables the direct observation of the two-libron spectrum and also leads to large anharmonic shifts in the single-libron spectrum.This publication has 42 references indexed in Scilit:
- Study of Nuclear-Magnetic-Resonance Line Shapes in SolidPhysical Review B, 1969
- Measurement ofand Related Properties in Solidified Gases. II. SolidPhysical Review B, 1969
- Rotational excitations in solid hydrogen and deuterium in the ordered stateDiscussions of the Faraday Society, 1969
- Observation of Pair Interaction between Ortho Molecules in SolidPhysical Review B, 1968
- Nuclear Magnetic Spin–Lattice Relaxation in Solid Deuterium below TλThe Journal of Chemical Physics, 1968
- Structures of Solid Deuterium above and below the λ Transition as Determined by Neutron DiffractionThe Journal of Chemical Physics, 1968
- Crystal-Structure Changes in Hydrogen and DeuteriumPhysical Review B, 1968
- Experimental investigations of critical phenomenaReports on Progress in Physics, 1967
- Microwave Measurements of the Radiation Temperature of PlasmasJournal of Applied Physics, 1961
- General Theory of Spin-Wave InteractionsPhysical Review B, 1956