Study on categorical bundles for gauge theories with new product concept.
arXiv research
A locally-built, LLM-digested index of recent arXiv papers in quant finance, geometry/topology, and statistical ML — keyword search served straight from SQLite on this machine.
Trend · papers per month
Multiplicative bundle gerbes are gerbes over a Lie group which are compatible with the group structure. In this article connections on such bundle gerbes are introduced and studied. It is shown that multiplicative bundle gerbes with connection furnish geometrical constructions of the following objects: smooth central e…
This work extends Chern correspondence to higher gauge theory.
We study the geometry of determinant line bundles associated to Dirac operators on compact odd dimensional manifolds. Physically, these arise as (local) vacuum line bundles in quantum gauge theory. We give a simplified derivation of the commutator anomaly formula using a construction based on noncyclic trace extensions…
We develop several methods that allow us to compute all-loop partition functions in perturbative Chern-Simons theory with complex gauge group G_C, sometimes in multiple ways. In the background of a non-abelian irreducible flat connection, perturbative G_C invariants turn out to be interesting topological invariants, wh…
Study gauge groups over high-dimensional manifolds, showing homotopy decompositions.
Gauge theory for families helps compare 4-manifold groups.
Study extends gauge-theoretic invariant to higher-dimensional Kahler surfaces and calculates homotopy groups.
Abelian gerbes and twisted bundles describe the topology of the NS-NS 3-form gauge field strength H. We review how they have been usefully applied to study and resolve global anomalies in open string theory. Abelian 2-gerbes and twisted nonabelian gerbes describe the topology of the 4-form field strength G of M-theory.…
Survey of gauge theory for families of 4-manifolds.
In this easy introduction to higher gauge theory, we describe parallel transport for particles and strings in terms of 2-connections on 2-bundles. Just as ordinary gauge theory involves a gauge group, this generalization involves a gauge '2-group'. We focus on 6 examples. First, every abelian Lie group gives a Lie 2-gr…
Describes higher gauge theory on string 2-group principal 2-bundles.
We consider dimensional reduction of gauge theories with arbitrary gauge group in a formalism based on equivariant principal bundles. For the classical gauge groups we clarify the relations between equivariant principal bundles and quiver bundles, and show that the reduced quiver gauge theories are all generically buil…
Classifies extensions of gauge Lie algebras for positive energy representations.
In the first part of this paper, we work out a perturbative Lagrangian formulation of semistrict higher gauge theory, that avoids the subtleties of the relationship between Lie 2-groups and algebras by relying exclusively on the structure semistrict Lie 2-algebra v and its automorphism 2-group Aut(v). Gauge transformat…
Survey of mathematical developments in gauge theory using thin homotopy.
New method for non-abelian parallel transport in higher gauge theories.
New approach simplifies gauge field theory without groups.
Class lecture notes at a beginning graduate level on the mathematical background needed to understand classical gauge theory. Covers group actions, fiber bundles, principal bundles, connections, gauge transformations, parallel transport, curvature, covariant derivatives, pseudo-riemannian manifolds, lagrangians, cliffo…
L-CNNs maintain gauge symmetry on non-Abelian lattice theories.
Researchers solved Einstein-Yang-Mills equations for arbitrary gauge groups.
In this paper we introduce principal 2-bundles and show how they are classified by non-abelian Cech cohomology. Moreover, we show that their gauge 2-groups can be described by 2-group-valued functors, much like in classical bundle theory. Using this, we show that, under some mild requirements, these gauge 2-groups poss…
A model for elliptic cohomology uses quantum field theory.
New Lie group structure on vertical bisections of Lie groupoids.
A new gauge principle for string models emerges from groupoid symmetries.
New representations of loop braid group from higher gauge theory effects.
The paper characterizes gauge balls in the Heisenberg group by their curvature.
In this article we give the realization of the Klein's Program for geometrical structures (Riemannian spaces and fiber bundles with connection) with arbitrary variable curvature within the framework of infinite deformed groups. These groups generalize gauge groups to the case of nontrivial action on the base space of b…
A description of how a theory of gravity can be considered as a gauge theory (in the sense of Trautman) of the Poincare' group is given. As a result, it is shown that a gauge theory of this kind is consistent with the Equivalence Principle only if the Lagrangian and the constraints are preserved not only by the gauge t…
Extends Coulomb gauge existence to non-associative gauge theory.
We study some graded geometric constructions appearing naturally in the context of gauge theories. Inspired by a known relation of gauging with equivariant cohomology we generalize the latter notion to the case of arbitrary Q-manifolds introducing thus the concept of equivariant Q-cohomology. Using this concept we desc…
It is argued that the enlargement of the gauge group found in non-commutative gauge theory is more fundamentally thought of as a consequence of the non-locality of the construction and that it was already encountered in an earlier discussion of a non-local gauge theory.
We discuss a general procedure for using characteristic classes to study the components of the gauge group for a principal G-bundle. To illustrate this, we work out the case where G is the projective unitary group.
This paper approximates SU(2) Chern-Simons theory using finite group gauge theories.
We study the relation between the space of representation classes of the fundamental group of a Riemann surface and gauge theory on trivalent graphs. We construct a partial gauge fixing in the latter gauge theory. As an application we get a proof of a conjecture of Florentino.
Develops a new geometric formulation for abelian gauge theories.
New anomaly cancellation formulas for E8*E8*E8 gauge group.
We consider the problem of existence of representations of topological groupoids on a principal bundle and the classification of such representations up to gauge transformation. Such representations naturally occur in various contexts such as gauge theory, lattice gauge fields, equivariant bundles, etc. In the course o…
Lecture notes explain Higgs mechanism for mathematicians.
5D gauge theories are dual to 3D and 2D models via Floer homologies.
We study the Chern-Simons topological quantum field theory with an inhomogeneous gauge group, a non-semi-simple group obtained from a semi-simple one by taking its semi-direct product with its Lie algebra. We find that the standard knot observables (i.e. traces of holonomies along knots) essentially vanish, but yet, th…
Solves the gauge problem in diffeomorphisms for non-compact spaces.
Develops a reduction theory for covariant field theories with gauge symmetries.
In this note, we study non-linear gauge theories for principal bundles, where the structure group is replaced by a Lie groupoid. We follow the approach of Moerdijk-Mrcun and establish its relation with the existing physics literature. In particular, we derive a new formula for the gauge transformation which closely res…
L-CNNs approximate gauge actions, revealing fixed points with no lattice artifacts.
Proposes a new variational principle for Einstein gravity.
Groups of "flagged homotopies" are introduced of which the usual (abelian for ) homotopy groups is the limit case for flags contracted to a point . Calculus of exterior forms with values in algebra is developped of which the limit cases are differential forms calculus (for $A=\bb R…
The paper characterizes gauge balls in the Heisenberg group and solves overdetermined problems.