Full replica symmetry breaking in p-spin-glass-like systems
arXiv:1701.00230 · doi:10.1134/S0021364017040051
Abstract
It is shown that continuously changing the effective number of interacting particles in p-spin-glass-like model allows to describe the transition from the full replica symmetry breaking glass solution to stable first replica symmetry breaking glass solution in the case of non-reflective symmetry diagonal operators used instead of Ising spins. As an example, axial quadrupole moments in place of Ising spins are considered and the boundary value is found.
5 pages, 3 figures
References in corpus (8)
- Theoretical perspective on the glass transition and amorphous materials
- Static replica approach to critical correlations in glassy systems
- Long-wavelength fluctuations lead to a model of the glass crossover
- Pressure induced orientational glass phase in molecular para-hydrogen
- Orientational glass transition in C_60
- Full versus first stage replica symmetry breaking in spin glasses
- Super-Cooled Liquids: Equivalence between Mode-Coupling Theory and Replica Approach
- Orientational glass: full replica symmetry breaking in generalized spin glass-like models without reflection symmetry