Search results for "Euclidean geometry"

showing 10 items of 83 documents

Geometry and quasisymmetric parametrization of Semmes spaces

2014

We consider decomposition spaces R/G that are manifold factors and admit defining sequences consisting of cubes-with-handles. Metrics on R/G constructed via modular embeddings of R/G into Euclidean spaces promote the controlled topology to a controlled geometry. The quasisymmetric parametrizability of the metric space R/G×R by R for any m ≥ 0 imposes quantitative topological constraints, in terms of the circulation and the growth of the cubes-with-handles, to the defining sequences for R/G. We give a necessary condition and a sufficient condition for the existence of parametrization. The necessary condition answers negatively a question of Heinonen and Semmes on quasisymmetric parametrizabi…

General Mathematicsta111010102 general mathematicsGeometry01 natural sciencesManifoldCombinatoricsMetric space0103 physical sciencesEuclidean geometry010307 mathematical physics0101 mathematicsParametrizationTopology (chemistry)MathematicsRevista Matemática Iberoamericana
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The Calm Before the Storm: Hilbert’s Early Views on Foundations

2000

In recent years there has been a growing interest among historians and philosophers of mathematics in the history of logic, set theory, and foundations.1 This trend has led to a major reassessment of early work undertaken in these fields, particularly when seen in the light of motivations that animated the leading actors. The present volume may thus be seen as a reflection of this renewed fascination with the work of Hilbert, Brouwer, Weyl, Bernays, and others, an interest that stems in part from the desire to understand the historical and intellectual context that inspired their investigations. With regard to Hilbert, it has been my contention for some time that his stance in the acrimonio…

GeographyMeteorologyEuclidean geometryAxiomatic systemContext (language use)History of logicSet (psychology)EpistemologySet theory (music)
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A variational method for spectral functions

2016

The Generalized Eigenvalue Problem (GEVP) has been used extensively in the past in order to reliably extract energy levels from time-dependent Euclidean correlators calculated in Lattice QCD. We propose a formulation of the GEVP in frequency space. Our approach consists of applying the model-independent Backus-Gilbert method to a set of Euclidean two-point functions with common quantum numbers. A GEVP analysis in frequency space is then applied to a matrix of estimators that allows us, among other things, to obtain particular linear combinations of the initial set of operators that optimally overlap to different local regions in frequency. We apply this method to lattice data from NRQCD. Th…

High Energy Physics - LatticeVariational methodLattice (order)Quantum mechanicsHigh Energy Physics - Lattice (hep-lat)Euclidean geometryLattice field theoryFOS: Physical sciencesEstimatorApplied mathematicsLattice QCDLinear combinationEigendecomposition of a matrixProceedings of 34th annual International Symposium on Lattice Field Theory — PoS(LATTICE2016)
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Connections and geodesics in the space of metrics

2015

We argue that the exponential relation $g_{\mu\nu} = \bar{g}_{\mu\rho}\big(\mathrm{e}^h\big)^\rho{}_\nu$ is the most natural metric parametrization since it describes geodesics that follow from the basic structure of the space of metrics. The corresponding connection is derived, and its relation to the Levi-Civita connection and the Vilkovisky-DeWitt connection is discussed. We address the impact of this geometric formalism on quantum gravity applications. In particular, the exponential parametrization is appropriate for constructing covariant quantities like a reparametrization invariant effective action in a straightforward way. Furthermore, we reveal an important difference between Eucli…

High Energy Physics - TheoryPhysicsNuclear and High Energy PhysicsGeodesicFOS: Physical sciencesGeneral Relativity and Quantum Cosmology (gr-qc)Mathematical Physics (math-ph)General Relativity and Quantum CosmologyExponential functionCombinatoricsGeneral Relativity and Quantum CosmologyFormalism (philosophy of mathematics)High Energy Physics - Theory (hep-th)Quantum mechanicsEuclidean geometryQuantum gravityCovariant transformationEffective actionMathematical PhysicsPhysical Review D
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Fluid membranes and2dquantum gravity

2011

We study the RG flow of two dimensional (fluid) membranes embedded in Euclidean D-dimensional space using functional RG methods based on the effective average action. By considering a truncation ansatz for the effective average action with both extrinsic and intrinsic curvature terms we derive a system of beta functions for the running surface tension, bending rigidity and Gaussian rigidity. We look for non-trivial fixed points but we find no evidence for a crumpling transition at $T\neq0$. Finally, we propose to identify the $D\rightarrow 0$ limit of the theory with two dimensional quantum gravity. In this limit we derive new beta functions for both cosmological and Newton's constants.

High Energy Physics - TheoryPhysicsNuclear and High Energy PhysicsStatistical Mechanics (cond-mat.stat-mech)GaussianAsymptotic safety in quantum gravityFOS: Physical sciencesGeneral Relativity and Quantum Cosmology (gr-qc)Fixed pointGeneral Relativity and Quantum CosmologyRenormalizationSurface tensionsymbols.namesakePhysics - Statistical MechanicsHigh Energy Physics - Theory (hep-th)Quantum mechanicsEuclidean geometrysymbolsQuantum gravityHigh Energy Physics - Theory; High Energy Physics - Theory; Physics - Statistical Mechanics; General Relativity and Quantum CosmologyCondensed Matter - Statistical MechanicsAnsatzPhysical Review D
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Nonperturbative structure of the ghost-gluon kernel

2019

The ghost-gluon scattering kernel is a special correlation function that is intimately connected with two fundamental vertices of the gauge sector of QCD: the ghost-gluon vertex, which may be obtained from it through suitable contraction, and the three-gluon vertex, whose Slavnov-Taylor identity contains that kernel as one of its main ingredients. In this work we present a detailed nonperturbative study of the five form factors comprising it, using as starting point the `one-loop dressed' approximation of the dynamical equations governing their evolution. The analysis is carried out for arbitrary Euclidean momenta, and makes extensive use of the gluon propagator and the ghost dressing funct…

High Energy Physics - TheoryQuantum chromodynamicsPhysicsHigh Energy Physics::LatticeHigh Energy Physics - Lattice (hep-lat)High Energy Physics::PhenomenologyFOS: Physical sciencesPropagatorGluonVertex (geometry)High Energy Physics - PhenomenologyTheoretical physicsHigh Energy Physics - Phenomenology (hep-ph)High Energy Physics - LatticeHigh Energy Physics - Theory (hep-th)Lattice (order)Euclidean geometryEquations for a falling bodyTwo-formPhysical Review
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A quasi-finite basis for multi-loop Feynman integrals

2014

We present a new method for the decomposition of multi-loop Euclidean Feynman integrals into quasi-finite Feynman integrals. These are defined in shifted dimensions with higher powers of the propagators, make explicit both infrared and ultraviolet divergences, and allow for an immediate and trivial expansion in the parameter of dimensional regularization. Our approach avoids the introduction of spurious structures and thereby leaves integrals particularly accessible to direct analytical integration techniques. Alternatively, the resulting convergent Feynman parameter integrals may be evaluated numerically. Our approach is guided by previous work by the second author but overcomes practical …

High Energy Physics - TheoryQuantum chromodynamicsPhysicsNuclear and High Energy PhysicsBasis (linear algebra)FOS: Physical sciencesPropagatorHigh Energy Physics - Phenomenologysymbols.namesakeDimensional regularizationHigh Energy Physics - Phenomenology (hep-ph)High Energy Physics - Theory (hep-th)Euclidean geometrysymbolsApplied mathematicsFeynman diagramIntegration by partsReduction (mathematics)Journal of High Energy Physics
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Euclidean geometry and physical space

2006

It takes a good deal of historical imagination to picture the kinds of debates that accompanied the slow process, which ultimately led to the acceptance of non-Euclidean geometries little more than a century ago. The difficulty stems mainly from our tendency to think of geometry as a branch of pure mathematics rather than as a science with deep empirical roots, the oldest natural science so to speak. For many of us, there is a natural tendency to think of geometry in idealized, Platonic terms. So to gain a sense of how late nineteenth-century authorities debated over the true geometry of physical space, it may help to remember the etymological roots of geometry: “geo” plus “metria” literall…

HistoryAnalytic geometryConvex geometryHistory and Philosophy of ScienceNon-Euclidean geometryAestheticsGeneral MathematicsPoint–line–plane postulateEuclidean geometryOrdered geometryAbsolute geometryTransformation geometryThe Mathematical Intelligencer
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Generalized Dimension Distortion under Mappings of Sub-Exponentially Integrable Distortion

2010

We prove a dimension distortion estimate for mappings of sub-exponentially integrable distortion in Euclidean spaces, which is essentially sharp in the plane.

Integrable systemMathematics - Complex VariablesGeneral MathematicsModulota111Mathematical analysisData_MISCELLANEOUSComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISIONData_CODINGANDINFORMATIONTHEORY30C62Distortion (mathematics)Exponential growthDimension (vector space)TheoryofComputation_ANALYSISOFALGORITHMSANDPROBLEMCOMPLEXITYEuclidean geometryFOS: MathematicsComplex Variables (math.CV)Constant (mathematics)MathematicsMathematicsofComputing_DISCRETEMATHEMATICS
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H-Point standard additions method for resolution of binary mixtures with simultaneous addition of both analytes

1995

Abstract The basis of the H-point standard additions method, HPSAM, with simultaneous addition of both analytes is proposed for the resolution of binary mixtures. It is a modification of the previously described H-point standard additions method that permits the resolution of both species from a unique calibration set by making the simultaneous addition of the two analytes. The method uses as analytical signals the absorbances at pairs of wavelengths where each species shows the same absorbance. The required data to apply the method are the absorbance values at the previously selected wavelengths for the sample alone and spiked with both species at known concentrations. Linear relations bet…

Internal standardAnalyteChromatographyResolution (mass spectrometry)ChemistryAnalytical chemistryBiochemistryIntersection (Euclidean geometry)Analytical ChemistryChemometricsAbsorbanceStandard additionEnvironmental ChemistryAbsorption (electromagnetic radiation)SpectroscopyAnalytica Chimica Acta
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