Quantum Criticality and the Alpha/Delta Puzzle
arXiv:0810.1984 · doi:10.1080/14786430802695536
Abstract
In this paper we suggest a novel explanation for the alpha-delta transition in plutonium based on an analogy between the evolution of the actinide ground state as a function of spin orbit coupling and the behaviour of thin film superconductors in a magnetic field. The key point is that in metals with a low carrier density spin-orbit interactions give rise to low energy monopole-like solitons with quantized spin currents, which play much the same role as Abrikosov vortices in thin film superconductors. In alpha-plutonium these solitons form an ordered solid, while in impurity stabilized delta-plutonium they form a pair condensate.
7 pages, 1 figure
References in corpus (5)
- Quantum Spin Hall Effect in Graphene
- A topological Dirac insulator in a quantum spin Hall phase : Experimental observation of first strong topological insulator
- Strongly coupled plasma with electric and magnetic charges
- Non-Abelian hydrodynamics and the flow of spin in spin-orbit coupled substances
- Superfluid Transition in a Chiron Gas