The instanton vacuum of generalized models
arXiv:cond-mat/0407776 · doi:10.1016/j.aop.2004.08.009
Abstract
It has recently been pointed out that the existence of massless chiral edge excitations has important strong coupling consequences for the topological concept of an instanton vacuum. In the first part of this paper we elaborate on the effective action for ``edge excitations'' in the Grassmannian non-linear sigma model in the presence of the term. This effective action contains complete information on the low energy dynamics of the system and defines the renormalization of the theory in an unambiguous manner. In the second part of this paper we revisit the instanton methodology and embark on the non-perturbative aspects of the renormalization group including the anomalous dimension of mass terms. The non-perturbative corrections to both the and functions are obtained while avoiding the technical difficulties associated with the idea of {\em constrained} instantons. In the final part of this paper we present the detailed consequences of our computations for the quantum critical behavior at . In the range we find quantum critical behavior with exponents that vary continuously with varying values of and . Our results display a smooth interpolation between the physically very different theories with (disordered electron gas, quantum Hall effect) and (O(3) non-linear sigma model, quantum spin chains) respectively, in which cases the critical indices are known from other sources. We conclude that instantons provide not only a {\em qualitative} assessment of the singularity structure of the theory as a whole, but also remarkably accurate {\em numerical} estimates of the quantum critical details (critical indices) at for varying values of and .
Elsart style, 87 pages, 15 figures
Cited by in corpus (28)
- Anderson Transitions
- Theta dependence of SU(N) gauge theories in the presence of a topological term
- Theory of Anomalous Quantum Hall Effects in Graphene
- Zamolodchikov asymptotic formula and instanton expansion in N=2 SUSY N_f=2N_c QCD
- Half-integer quantum Hall effect of disordered Dirac fermions at a topological insulator surface
- Wave function multifractality and dephasing at metal-insulator and quantum Hall transitions
- Theta renormalization, electron-electron interactions and super universality in the quantum Hall regime
- Compressibility stripes for mesoscopic quantum Hall samples
- Emergence of integer quantum Hall effect from chaos
- Interaction and disorder effects in 3D topological insulator thin films
- Behavior near of the mass gap in the 2D O(3) non-linear sigma model
- Coulomb Blockade and Super Universality of the Theta-Angle
- Theta-vacuum and large N limit in CP^{N-1} sigma models
- The problem of "macroscopic charge quantization" in single-electron devices
- Weakly chiral networks and 2D delocalized states in a weak magnetic field
- Generalized multifractality in the spin quantum Hall symmetry class with interaction
- Phase diagram of weak-magnetic-field quantum Hall transition quantified from classical percolation
- Hartree-Fock Interactions in the Integer Quantum Hall Effect
- Renormalization of the vacuum angle in quantum mechanics, Berry phase and continuous measurements
- Exact Haldane mapping for all and super universality in spin chains
- The CP(N-1) model on a Disc and Decay of a Non-Abelian String
- A simple microscopic description of quantum Hall transition without Landau levels
- Super universality of the quantum Hall effect and the "large picture" of the angle
- Cross-over behavior of disordered interacting two-dimensional electron systems in a parallel magnetic field
- Instanton analysis for the spin quantum Hall symmetry class: Non-perturbative corrections to physical observables and generalized multifractal spectrum
- Boundary multifractality in the spin quantum Hall symmetry class with interaction
- Two-instanton approximation to the Coulomb blockade problem
- Super universality of dimerised spin chains