Search results for "Algebraic Geometry"

showing 10 items of 356 documents

�ber niedrigdimensionale projektive Darstellungen von Kettengeometrien

1985

Pure mathematicsDifferential geometryHyperbolic geometryGeometry and TopologyAlgebraic geometryTopology (chemistry)MathematicsProjective geometryGeometriae Dedicata
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Parallelismen in unendlichen projektiven R�umen endlicher Dimension

1978

Pure mathematicsDifferential geometryHyperbolic geometryGeometry and TopologyAlgebraic geometryTopology (chemistry)MathematicsProjective geometryGeometriae Dedicata
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Projektiv darstellbare stark planare Geometrien vom Rang 4

1976

Pure mathematicsDifferential geometryHyperbolic geometryGeometry and TopologyAlgebraic geometryTopology (chemistry)MathematicsProjective geometryGeometriae Dedicata
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Kleinste Kleinsche Flaschen mit Rand

1979

Pure mathematicsDifferential geometryHyperbolic geometryGeometry and TopologyAlgebraic geometryTopology (chemistry)Projective geometryMathematicsGeometriae Dedicata
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Charakterisierung (A, B)-regul�rer faserungen durch schliessungss�tze

1977

Pure mathematicsDifferential geometryHyperbolic geometryGeometry and TopologyAlgebraic geometryTopology (chemistry)Projective geometryMathematicsGeometriae Dedicata
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On stable geometries

1994

Within the concept of projective lattice geometry we are considering the class of stable geometries which have also been introduced in [14]. The investigation of their basic properties will result in fundamental structure theorems which especially give a lattice-geometric characterization of free left modules of rank ≥6 over proper right Bezout rings of stable rank 2. This yields a proper generalization of previous results of ours.

Pure mathematicsDifferential geometryRank (linear algebra)GeneralizationHyperbolic geometryStructure (category theory)Geometry and TopologyAlgebraic geometryLattice (discrete subgroup)MathematicsProjective geometryGeometriae Dedicata
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Finiteness properties of pseudo-hyperbolic varieties

2019

Motivated by Lang-Vojta's conjecture, we show that the set of dominant rational self-maps of an algebraic variety over a number field with only finitely many rational points in any given number field is finite by combining Amerik's theorem for dynamical systems of infinite order with properties of Prokhorov-Shramov's notion of quasi-minimal models. We also prove a similar result in the geometric setting by using again Amerik's theorem and Prokhorov-Shramov's notion of quasi-minimal model, but also Weil's regularization theorem for birational self-maps and properties of dynamical degrees. Furthermore, in the geometric setting, we obtain an analogue of Kobayashi-Ochiai's finiteness result for…

Pure mathematicsDynamical systems theoryGeneral Mathematics[MATH.MATH-DS]Mathematics [math]/Dynamical Systems [math.DS]Dynamical Systems (math.DS)Type (model theory)01 natural sciencesSurjective functionMathematics - Algebraic Geometry0103 physical sciencesFOS: MathematicsNumber Theory (math.NT)0101 mathematicsMathematics - Dynamical Systems[MATH]Mathematics [math]Algebraic Geometry (math.AG)MathematicsConjectureMathematics - Number Theory010102 general mathematicsOrder (ring theory)Algebraic varietyAlgebraic number field[MATH.MATH-NT]Mathematics [math]/Number Theory [math.NT]Regularization (physics)010307 mathematical physics[MATH.MATH-AG]Mathematics [math]/Algebraic Geometry [math.AG]
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On the numerical evaluation of algebro-geometric solutions to integrable equations

2011

Physically meaningful periodic solutions to certain integrable partial differential equations are given in terms of multi-dimensional theta functions associated to real Riemann surfaces. Typical analytical problems in the numerical evaluation of these solutions are studied. In the case of hyperelliptic surfaces efficient algorithms exist even for almost degenerate surfaces. This allows the numerical study of solitonic limits. For general real Riemann surfaces, the choice of a homology basis adapted to the anti-holomorphic involution is important for a convenient formulation of the solutions and smoothness conditions. Since existing algorithms for algebraic curves produce a homology basis no…

Pure mathematicsExplicit formulaeGeneral Physics and AstronomyFOS: Physical sciencesTheta functionHomology (mathematics)37K10 14Q05 35Q5501 natural sciencessymbols.namesakeMathematics - Algebraic Geometry[MATH.MATH-MP]Mathematics [math]/Mathematical Physics [math-ph]0103 physical sciencesFOS: Mathematics0101 mathematics[MATH.MATH-MP] Mathematics [math]/Mathematical Physics [math-ph]010306 general physicsAlgebraic Geometry (math.AG)Mathematical PhysicsMathematicsPartial differential equationNonlinear Sciences - Exactly Solvable and Integrable SystemsApplied MathematicsRiemann surface010102 general mathematics[ MATH.MATH-MP ] Mathematics [math]/Mathematical Physics [math-ph]Statistical and Nonlinear PhysicsMathematical Physics (math-ph)Nonlinear systemsymbolsAlgebraic curveExactly Solvable and Integrable Systems (nlin.SI)Symplectic geometry
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Algebraic time-reversal operation

1999

International audience; We analyze the implementation of the time-reversal (TR) transformation in the algebraic approach to tetrahedral local molecules through the chain of groups U(5) U(4) K(4) = A(4) ^ S(4) S(4) Td. We determine the general form of the TR operation using a purely algebraic realization, based exclusively on the requirement that the irreducible representations must not be changed under the time inversion symmetry. As a result we can determine the TR behavior of purely algebraic operators.

Pure mathematicsFunction field of an algebraic variety[ PHYS.QPHY ] Physics [physics]/Quantum Physics [quant-ph]010304 chemical physics03.65.Fd Algebraic methods - 31.15.Hz Group theoryAlgebraic extensionDimension of an algebraic variety010402 general chemistry01 natural sciencesAtomic and Molecular Physics and Optics0104 chemical sciencesAlgebraic cycle[PHYS.QPHY]Physics [physics]/Quantum Physics [quant-ph]Algebraic methodsQuantum mechanics0103 physical sciencesAlgebraic surfaceReal algebraic geometryAlgebraic functionGroup theoryDifferential algebraic geometryMathematicsThe European Physical Journal D
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Hadamard-type theorems for hypersurfaces in hyperbolic spaces

2006

Abstract We prove that a bounded, complete hypersurface in hyperbolic space with normal curvatures greater than −1 is diffeomorphic to a sphere. The completeness condition is relaxed when the normal curvatures are bounded away from −1. The diffeomorphism is constructed via the Gauss map of some parallel hypersurface. We also give bounds for the total curvature of this parallel hypersurface.

Pure mathematicsGauss mapMathematics::Dynamical SystemsMathematics::Complex VariablesHyperbolic spaceSecond fundamental formMathematical analysisCauchy–Hadamard theoremGauss–Kronecker curvatureSecond fundamental formHypersurfaceMathematics::Algebraic GeometryComputational Theory and MathematicsBounded functionHadamard theoremTotal curvatureDiffeomorphismGeometry and TopologyMathematics::Differential GeometryAnalysisConvex hypersurfaceMathematicsDifferential Geometry and its Applications
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