Search results for "Variables"

showing 10 items of 578 documents

Characterizing boundedness of metaplectic Toeplitz operators

2023

We study Toeplitz operators on the Bargmann space, with Toeplitz symbols given by exponentials of complex quadratic forms. We show that the boundedness of the corresponding Weyl symbols is necessary for the boundedness of the operators, thereby completing the proof of the Berger-Coburn conjecture in this case. We also show that the compactness of such Toeplitz operators is equivalent to the vanishing of their Weyl symbols at infinity.

Mathematics - Functional Analysis32A36 32U05 32W25 35S30 47B35Mathematics - Complex VariablesFOS: MathematicsComplex Variables (math.CV)Functional Analysis (math.FA)
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Bohr radii of vector valued holomorphic functions

2012

Abstract Motivated by the scalar case we study Bohr radii of the N -dimensional polydisc D N for holomorphic functions defined on D N with values in Banach spaces.

Mathematics(all)Mathematics::Functional AnalysisMathematics::Complex VariablesGeneral MathematicsMathematical analysisScalar (mathematics)Banach spaceHolomorphic functionPower seriesPolydiscPolynomialsBohr modelBanach spacessymbols.namesakesymbolsBohr radiusMathematical physicsMathematicsAdvances in Mathematics
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The Riemann hypothesis : the great pending mayhematical challenge

2018

The Riemann hypothesis is an unproven statement referring to the zeros of the Riemann zeta function. Bernhard Riemann calculated the first six non-trivial zeros of the function and observed that they were all on the same straight line. In a report published in 1859, Riemann stated that this might very well be a general fact. The Riemann hypothesis claims that all non-trivial zeros of the zeta function are on the the line x=1/2. The more than ten billion zeroes calculated to date, all of them lying on the critical line, coincide with Riemann?s suspicion, but no one has yet been able to prove that the zeta function does not have non-trivial zeroes outside of this line.

Mathematics::Complex Variables
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Sobolev estimates for optimal transport maps on Gaussian spaces

2012

We will study variations in Sobolev spaces of optimal transport maps with the standard Gaussian measure as the reference measure. Some dimension free inequalities will be obtained. As application, we construct solutions to Monge-Ampere equations in finite dimension, as well as on the Wiener space.

Mathematics::Complex VariablesGaussianProbability (math.PR)Mathematics::Analysis of PDEsGaussian measureSobolev spaceStrong solutionssymbols.namesakeFOS: MathematicssymbolsApplied mathematicsEntropy (information theory)Fisher informationMathematics - ProbabilityAnalysisMathematicsJournal of Functional Analysis
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A rigidity theorem for the pair ${\cal q}{\Bbb C} P^n$ (complex hyperquadric, complex projective space)

1999

Given a compact Kahler manifold M of real dimension 2n, let P be either a compact complex hypersurface of M or a compact totally real submanifold of dimension n. Let \(\cal q\) (resp. \({\Bbb R} P^n\)) be the complex hyperquadric (resp. the totally geodesic real projective space) in the complex projective space \({\Bbb C} P^n\) of constant holomorphic sectional curvature 4\( \lambda \). We prove that if the Ricci and some (n-1)-Ricci curvatures of M (and, when P is complex, the mean absolute curvature of P) are bounded from below by some special constants and volume (P) / volume (M) \(\leq \) volume (\(\cal q\))/ volume \(({\Bbb C} P^n)\) (resp. \(\leq \) volume \(({\Bbb R} P^n)\) / volume …

Mathematics::Complex VariablesGeneral MathematicsComplex projective spaceMathematical analysisHolomorphic functionSubmanifoldCombinatoricsHypersurfaceProjective spaceMathematics::Differential GeometrySectional curvatureRicci curvatureReal projective spaceMathematicsArchiv der Mathematik
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A symmetrization result for Monge–Ampère type equations

2007

In this paper we prove some comparison results for Monge–Ampere type equations in dimension two. We also consider the case of eigenfunctions and we derive a kind of “reverse” inequalities. (© 2007 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim)

Mathematics::Complex VariablesGeneral MathematicsMathematical analysisComparison resultsMonge-Ampère equationEigenfunctionType (model theory)Monge-Ampère equationsDimension (vector space)Settore MAT/05 - Analisi Matematicaeigenvalue problemrearrangementsSymmetrizationAmpereEigenvalue problemsMathematicsMathematische Nachrichten
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Kähler Tubes of Constant Radial Holomorphic Sectional Curvature

1997

We determine (up to holomorphic isometries) the family of Kahler tubes, around totally geodesic complex submanifolds, of constant radial holomorphic sectional curvature when the centreP of the tube is either simply connected or a complex hypersurface withH1 (P, R)=0. In the last case, these tubes have the topology of tubular neighbourhoods of the zero section of the complex lines bundles over symplectic manifolds (when they are Kahler) of the Kostant-Souriau prequantization.

Mathematics::Complex VariablesGeneral MathematicsMathematical analysisHolomorphic functionZero (complex analysis)Algebraic geometrySection (fiber bundle)HypersurfaceSimply connected spaceMathematics::Differential GeometrySectional curvatureMathematics::Symplectic GeometryMathematicsSymplectic geometry
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Semiclassical Gevrey operators and magnetic translations

2020

We study semiclassical Gevrey pseudodifferential operators acting on the Bargmann space of entire functions with quadratic exponential weights. Using some ideas of the time frequency analysis, we show that such operators are uniformly bounded on a natural scale of exponentially weighted spaces of holomorphic functions, provided that the Gevrey index is $\geq 2$.

Mathematics::Complex VariablesMathematics - Complex VariablesMathematics::Analysis of PDEsStatistical and Nonlinear Physics32W25 35S05 47G30Mathematics::Spectral TheoryFunctional Analysis (math.FA)Mathematics - Functional AnalysisMathematics - Analysis of PDEsFOS: MathematicsGeometry and TopologyComplex Variables (math.CV)Mathematical PhysicsAnalysis of PDEs (math.AP)
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A proof of Carleson's 𝜀2-conjecture

2021

In this paper we provide a proof of the Carleson 𝜀2-conjecture. This result yields a characterization (up to exceptional sets of zero length) of the tangent points of a Jordan curve in terms of the finiteness of the associated Carleson 𝜀2-square function. peerReviewed

Mathematics::Complex Variablessquare functiontangentJordan curveMathematics::Classical Analysis and ODEsrectifiabilitymittateoriaharmoninen analyysi
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Optimal Extensions of Conformal Mappings from the Unit Disk to Cardioid-Type Domains

2019

AbstractThe conformal mapping $$f(z)=(z+1)^2 $$ f ( z ) = ( z + 1 ) 2 from $${\mathbb {D}}$$ D onto the standard cardioid has a homeomorphic extension of finite distortion to entire $${\mathbb {R}}^2 .$$ R 2 . We study the optimal regularity of such extensions, in terms of the integrability degree of the distortion and of the derivatives, and these for the inverse. We generalize all outcomes to the case of conformal mappings from $${\mathbb {D}}$$ D onto cardioid-type domains.

Mathematics::Dynamical SystemsDegree (graph theory)Mathematics - Complex Variables010102 general mathematicsInverseConformal mapType (model theory)01 natural sciencesUnit diskCombinatoricsDistortion (mathematics)inner cuspDifferential geometryCardioid0103 physical sciencesFOS: Mathematicshomeomorphisms of finite distortionanalyyttinen geometria010307 mathematical physicsGeometry and TopologyComplex Variables (math.CV)0101 mathematicsextensionsMathematicsThe Journal of Geometric Analysis
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