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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.

169,341 papers · 148 categories

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48 results for flux backgrounds

Researchers calculate exact moduli for type II flux backgrounds using spectral sequences.

problem Determining exact moduli of type II flux backgrounds in string theory.
method Using techniques from generalised geometry, they count infinitesimal deformations via a spectral sequence.
result The spectral sequence reproduces naïve expectations and shows all obstructions vanish, impacting the tadpole conjecture.

Proves Minkowski flux backgrounds preserve supersymmetry and relate to special holonomy.

problem Relating Minkowski flux backgrounds to special holonomy manifolds.
method Introducing Kosmann-Dorfman bracket and Killing superalgebra.
result Generic Minkowski flux backgrounds preserving N supersymmetries correspond to integrable generalised G_N structures.

Researchers found no AdS4 backgrounds with >16 supersymmetries in IIB supergravity, and unique ones in IIA and 11D.

problem Exploring AdS4 backgrounds with >16 supersymmetries in 10 and 11 dimensions.
method Examined all possible fluxes and isometry constraints in IIB, IIA, and 11D supergravities.
result No AdS4 backgrounds with >16 supersymmetries in IIB supergravity, unique ones in IIA and 11D.

T-duality acts on circle bundles by exchanging the first Chern class with the fiberwise integral of the H-flux, as we motivate using E_8 and also using S-duality. We present known and new examples including NS5-branes, nilmanifolds, Lens spaces, both circle bundles over RP^n, and the AdS^5 x S^5 to AdS^5 x CP^2 x S^1 w…

2003-06-09abs ↗pdf ↗

Survey para-Hermitian geometry and its applications in physics.

problem Capturing double field theory concepts on para-Hermitian manifolds.
method Geometric theory of Lagrangian and Hamiltonian systems, deformations of para-Kahler structures, non-linear connections, and weak integrability.
result Reproduce generalized fluxes in para-Hermitian geometry and describe their emergence.

The paper constructs new supergravity backgrounds using specific geometric constraints.

problem Finding new supergravity backgrounds in eleven-dimensional space.
method Using twisted products of six-dimensional and five-dimensional manifolds, and analyzing the bosonic supergravity equations.
result New supergravity backgrounds appear for special cases of the adapted flux 4-form.

We present a maximally supersymmetric IIB string background. The geometry is that of a conformally flat lorentzian symmetric space G/K with solvable G, with a homogeneous five-form flux. We give the explicit supergravity solution, compute the isometries, the 32 Killing spinors, and the symmetry superalgebra, and then d…

2001-10-26abs ↗pdf ↗

Study of string theory flux compactifications using generalized geometry.

problem Characterizing generic Minkowski flux compactifications in string theory.
method Using E7(7)×R^+ generalized geometry, analyze involutive subbundles and moment maps.
result Counted massless scalar moduli of GMPT solutions using generalised geometry cohomology.

We construct new examples of torsional heterotic backgrounds using duality with orientifold flux compactifications. We explain how duality provides a perturbative solution to the type I/heterotic string Bianchi identity. The choice of connection used in the Bianchi identity plays an important role in the construction. …

2009-03-23abs ↗pdf ↗

Generalised geometry studies structures on a d-dimensional manifold with a metric and 2-form gauge field on which there is a natural action of the group SO(d,d). This is generalised to d-dimensional manifolds with a metric and 3-form gauge field on which there is a natural action of the group EdE_{d}. This provides a f…

2007-01-22abs ↗pdf ↗

Decomposable 11D supergravity backgrounds on product manifolds are described.

problem Constructing homogeneous supergravity backgrounds remains an open problem.
method Using flux forms and Einstein manifolds, the Maxwell equation is reduced to conditions on the underlying manifolds.
result Decomposable supergravity backgrounds can be constructed from specific Einstein and Riemannian manifolds.

We summarize our geometric and topological description of compact eight-manifolds which arise as internal spaces in N=1{\cal N}=1 flux compactifications of M-theory down to AdS3\mathrm{AdS}_3, under the assumption that the internal part of the supersymmetry generator is everywhere non-chiral. Specifying such a supersymmet…

2015-03-01abs ↗pdf ↗

We discuss mirror symmetry in generalized Calabi-Yau compactifications of type II string theories with background NS fluxes. Starting from type IIB compactified on Calabi-Yau threefolds with NS three-form flux we show that the mirror type IIA theory arises from a purely geometrical compactification on a different class…

2002-11-12abs ↗pdf ↗

We study the most general supersymmetric warped M-theory backgrounds with non-trivial G-flux of the type R^{1,2} x M_8 and AdS_3 x M_8. We give a set of necessary and sufficient conditions for preservation of supersymmetry which are phrased in terms of G-structures and their intrinsic torsion. These equations may be in…

2003-06-23abs ↗pdf ↗

Invariant rr^\sharp predicts H-flux behavior under T-duality.

problem Predicting H-flux behavior under T-duality on product manifolds.
method Using rr^\sharp invariant to analyze metric connections and T-duality effects.
result Invariant rr^\sharp detects irreducible H-flux components that survive T-duality.

Extends Penrose's method to null shells with pressure and energy flux.

problem Constructing null thin shells with arbitrary gravitational/matter content.
method Derive locally Lipschitz metric and coordinate transformation.
result Example of null shell with non-trivial energy density, flux, and pressure in Minkowski space.

Investigates geometric aspects of double field theory and its membrane sigma-model formulation.

problem Capturing geometric and non-geometric flux backgrounds in DFT.
method Determines a splitting and projection of the Courant algebroid, constructs a membrane sigma-model, and analyzes gauge invariance.
result Unified description of geometric and non-geometric flux backgrounds in DFT.

Study topological G₂ and Spin(7) strings at 1-loop using double complexes.

problem Calculate topological string partition functions at 1-loop.
method Define double complexes for supersymmetric backgrounds using generalised geometry, compute partition functions as alternating products of determinants of Laplacians.
result Reproduce known results for G₂ string and predict for Spin(7) string.

In this paper we study several issues related to the generation of superpotential induced by background Ramond-Ramond fluxes in compactification of Type IIA string theory on Calabi-Yau four-folds. Identifying BPS solitons with D-branes wrapped over calibrated submanifolds in a Calabi-Yau space, we propose a general for…

1999-11-03abs ↗pdf ↗

This dissertation explores Clifford bundles and spinor fields in geometric and algebraic contexts.

problem Understanding spinor fields and their classification in geometric frameworks.
method Combines algebraic and geometric approaches to study Clifford structures on bundles and spinor fields.
result Identifies new spinor field classes in warped flux compactifications.

We define intrinsic torsion in generalised geometry and use it to introduce a new notion of generalised special holonomy. We then consider generic warped supersymmetric flux compactifications of M theory and Type II of the form RD1,1×M\mathbb{R}^{D-1,1}\times M. Using the language of Ed(d)×R+E_{d(d)}\times\mathbb{R}^+ generalised…

2014-11-20abs ↗pdf ↗

A geometric string solution has background fields in overlapping coordinate patches related by diffeomorphisms and gauge transformations, while for a non-geometric background this is generalised to allow transition functions involving duality transformations. Non-geometric string backgrounds arise from T-duals and mirr…

2004-06-11abs ↗pdf ↗

Formula identifies boundary flux for Kähler manifolds under parallel deformation.

problem Identifying boundary flux for Kähler manifolds under parallel deformation.
method One-sided Hadamard formula for normalized Monge-Ampère energy.
result Identifies boundary component as negative outward Anzellotti trace of divergence-measure flux current.

We investigate the Kaluza-Klein reductions to ten dimensions of the purely gravitational half-BPS M-theory backgrounds: the M-wave and the Kaluza-Klein monopole. We determine the moduli space of smooth (supersymmetric) Kaluza-Klein reductions by classifying the freely-acting spacelike Killing vectors which preserve som…

2002-08-15abs ↗pdf ↗

We discuss the structure of "exceptional generalised geometry" (EGG), an extension of Hitchin's generalised geometry that provides a unified geometrical description of backgrounds in eleven-dimensional supergravity. On a d-dimensional background, as first described by Hull, the action of the generalised geometrical O(d…

2008-04-08abs ↗pdf ↗

Study topological twists of massive SQCD with gauge group SU(2) and 3 or fewer fundamental hypermultiplets.

problem Evaluate topological partition functions of massive SQCD with arbitrary gauge bundles and hypermultiplet masses.
method Develop techniques for evaluating low-energy path integrals on the Coulomb branch.
result Formulate theories for arbitrary gauge bundles on compact four-manifolds.

Study non-geometric M-theory backgrounds, proving they are differentiable manifolds.

problem Prove non-geometric M-theory backgrounds are differentiable manifolds.
method Prove non-geometric backgrounds are differentiable manifolds, using Kähler covering and deck transformations.
result Non-geometric backgrounds are differentiable manifolds with unique geometric and topological properties.

We determine the geometry of supersymmetric heterotic string backgrounds for which all parallel spinors with respect to the connection ^\hat\nabla with torsion HH, the NS\otimesNS three-form field strength, are Killing. We find that there are two classes of such backgrounds, the null and the timelike. The Killing s…

2005-10-20abs ↗pdf ↗

New theory connects string theory to swampland distance conjecture.

problem Connecting string theory to swampland distance conjecture.
method Deformations of the heterotic superpotential, treating separately for large fluxes or large distances, integrating out fields to obtain a new field theory.
result New holomorphic theory defined, connects to swampland distance conjecture.

We classify and construct all the smooth Kaluza-Klein reductions to ten dimensions of the M2- and M5-brane configurations which preserve some of the supersymmetry. In this way we obtain a wealth of new supersymmetric IIA backgrounds describing composite configurations of D-branes, NS-branes and flux/nullbranes; bound s…

2002-08-15abs ↗pdf ↗

Bayesian analysis uncovers flux couplings in metabolic networks.

problem Uncertainty and unrealistic assumptions in traditional flux analysis methods.
method Introduces Bayesian metabolic flux analysis to model reactions probabilistically and infer flux distributions.
result Reveals informative flux couplings and more unobserved fluxes in metabolic networks.

Study introduces a probabilistic framework for air-sea fluxes using neural networks.

problem Accurately quantifying air-sea fluxes for understanding interactions and improving weather/climate models.
method Gaussian distributions conditioned on input variables, artificial neural networks, eddy-covariance data, minimizing negative log-likelihood loss.
result Trained neural networks provide alternative mean flux estimates and quantify uncertainty.

The chiral de Rham complex of Malikov, Schechtman, and Vaintrob, is a sheaf of differential graded vertex algebras that exists on any smooth manifold ZZ, and contains the ordinary de Rham complex at weight zero. Given a closed 3-form HH on ZZ, we construct the twisted chiral de Rham differential DHD_H, which coincid…

2014-11-29abs ↗pdf ↗