Solution of the local field equations for self-generated glasses
arXiv:cond-mat/0305404 · doi:10.1103/PhysRevB.70.024207
Abstract
We present a self-consistent local approach to self generated glassiness which is based on the concept of the dynamical mean field theory to many body systems. Using a replica approach to self generated glassiness, we map the problem onto an effective local problem which can be solved exactly. Applying the approach to the Brazovskii-model, relevant to a large class of systems with frustrated micro-phase separation, we are able to solve the self-consistent local theory without using additional approximations. We demonstrate that a glassy state found earlier in this model is generic and does not arise from the use of perturbative approximations. In addition we demonstrate that the glassy state depends strongly on the strength of the frustrated phase separation in that model.
11 pages, 3 figures
References in corpus (7)
- Evidence for a generic novel quantum transition in high-Tc cuprates
- Glass Transition in the Polaron Dynamics of CMR Manganites
- A note on cluster methods for strongly correlated electron systems
- Self generated randomness, defect wandering and viscous flow in stripe glasses
- Dynamical Mean Field Theory for Self-Generated Quantum Glasses
- Theory of Microemulsion Glasses
- Structural glass on a lattice in the limit of infinite dimensions
Cited by in corpus (9)
- The frustration-based approach of supercooled liquids and the glass transition: a review and critical assessment
- Mesoscopic lattice Boltzmann modeling of flowing soft systems
- Random Isotropic Structures and Possible Glass Transitions in Diblock Copolymer Melts
- Replica theory for fluctuations of the activation barriers in glassy systems
- Phase-field model of long-time glass-like relaxation in binary fluid mixtures
- Typical-Medium Theory of Mott-Anderson Localization
- Stripe glasses in ferromagnetic thin films
- Topological Defects in Systems with Two Competing Order Parameters: Application to Superconductors with Charge- and Spin-Density Waves
- Frustrated magnets in the limit of infinite dimensions: dynamics and disorder-free glass transition