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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.

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48 results for Lorentz hypersurface

Study of Lorentz hypersurfaces with specific curvature properties.

problem Characterizing Lorentz hypersurfaces with complex eigenvalues and constant mean curvature.
method Analyzing hypersurfaces in E1n+1E_{1}^{n+1} satisfying riangleH=αH riangle \vec {H}= α\vec {H} with non-diagonal shape operator.
result Hypersurfaces with at most five distinct principal curvatures have constant mean curvature.

The paper studies biconservative Lorentz hypersurfaces with complex eigenvalues and constant mean curvature.

problem Properties of biconservative Lorentz hypersurfaces with complex eigenvalues.
method Analyzes hypersurfaces in E1n+1E_{1}^{n+1} with shape operators having complex eigenvalues.
result Hypersurfaces with complex eigenvalues have constant mean curvature.

The paper classifies biconservative Lorentz hypersurfaces with complex eigenvalues.

problem Classifying biconservative Lorentz hypersurfaces with complex eigenvalues.
method Analyzing biharmonic and biconservative submanifolds in E1n+1\mathbb{E}_{1}^{n+1}.
result Every biconservative Lorentz hypersurface M1nM_{1}^{n} in E1n+1\mathbb{E}_{1}^{n+1} with complex eigenvalues has constant mean curvature.

Navigation in Lorentz Finsler geometry induces isoparametric hypersurfaces.

problem Defining and analyzing isoparametric hypersurfaces in Lorentz Finsler geometry.
method Using a navigation process with a Finsler metric and a tangent vector field, isoparametric functions and hypersurfaces are defined and analyzed.
result Local correspondences between isoparametric functions and hypersurfaces are established.

The paper studies canal hypersurfaces in Lorentz-Minkowski 4-space.

problem Characterizing canal hypersurfaces formed by pseudo null, partially null, and null curves.
method Obtained parametric expressions and geometric invariants of canal hypersurfaces.
result Characterizations of tubular hypersurfaces in E14E^4_1.

In this paper, first we give a notion for linear Weingarten spacelike hypersurfaces with P+aH=bP+aH=b in a locally symmetric Lorentz space L1n+1L_{1}^{n+1}. Furthermore, we study complete or compact linear Weingarten spacelike hypersurfaces in locally symmetric Lorentz spaces L1n+1L_{1}^{n+1} satisfying some curvature conditions…

2013-09-07abs ↗pdf ↗

The study examines spacelike foliations on Lorentz manifolds under specific conditions.

problem Investigating geometric properties of spacelike foliations on Lorentz manifolds.
method Analyzing conditions for stability, total geodesy, and total umbilicity of foliation leaves.
result Conditions for the stability, total geodesy, and total umbilicity of spacelike foliation leaves are established.

The paper estimates curvature for specific hypersurfaces in a special space.

problem Estimating curvature for spacelike graphic hypersurfaces in Lorentz-Minkowski space.
method Analyzing the geometry of spacelike admissible graphic hypersurfaces.
result Existence of specific hypersurfaces with prescribed curvature and boundary conditions.

Study of prescribed mean curvature flow on noncompact hypersurfaces in Lorentz manifolds.

problem Short time existence and long time existence of prescribed mean curvature flow on noncompact spacelike hypersurfaces.
method Finding sufficient conditions for short time existence and discussing long time existence and convergence.
result Sufficient conditions for short time existence of prescribed mean curvature flow on noncompact spacelike hypersurfaces.

Study geometric properties of spacelike foliations on Lorentz manifolds.

problem Investigate conditions for spacelike foliations to be totally umbilical or geodesic.
method Develop an equation relating foliation to ambient manifold, apply Maximum principle.
result Obtain an obstruction for totally geodesic foliations in spacetimes with positive Ricci curvature.

In this paper we study several aspects of the geometry of conformally stationary Lorentz manifolds, and particularly of GRW spaces, due to the presence of a closed conformal vector field. More precisely, we begin by extending to these spaces a result of J. Simons on the minimality of cones in Euclidean space, and apply…

2010-04-05abs ↗pdf ↗

Unified framework for photon and massive particle hypersurfaces in stationary spacetimes.

problem Understanding photon and massive particle hypersurfaces in stationary spacetimes.
method Unified framework using Killing-invariant timelike hypersurfaces and associated Finsler structures.
result Conditions for a hypersurface to be a photon or massive particle hypersurface are established.

Improves Bernstein theorem for zero mean curvature hypersurfaces in Lorentz-Minkowski space.

problem Proving entire zero mean curvature graphs are hyperplanes in Lorentz-Minkowski space.
method Using line theorems at degenerate light-like points to generalize Bernstein theorem.
result Entire zero mean curvature graphs in Lorentz-Minkowski space are hyperplanes if they only contain space-like or light-like points.

The study classifies special Lorentz surfaces in a 4-space with neutral metric.

problem Classifying meridian surfaces in a pseudo-Euclidean 4-space.
method Constructing and classifying meridian surfaces with specific properties.
result There exist meridian surfaces with parallel normalized mean curvature vector field but not parallel mean curvature vector.

The paper studies a flow of spacelike surfaces in Lorentz-Minkowski space, proving convergence to a hyperbolic plane.

problem Evolution of spacelike graphic hypersurfaces in Lorentz-Minkowski space.
method Anisotropic inverse mean curvature flow with Neumann boundary condition.
result The flow converges to a hyperbolic plane as time tends to infinity.

Study classifies hypersurfaces in 4D Lorentz-Minkowski space using specific operators.

problem Classifying tubular hypersurfaces in 4D Lorentz-Minkowski space.
method Analysis of Gauss map and linearized operators L1\mathcal{L}_{1} and L2\mathcal{L}_{2}.
result Classifications of hypersurfaces with specific types of Gauss maps.

Lightlike manifolds studied via Cartan geometries in Lorentz-Minkowski spacetime.

problem Characterizing and constructing lightlike metrics and hypersurfaces.
method Introducing lightlike Cartan geometries and constructing ambient Lorentzian manifolds.
result Every lightlike Cartan geometry on a manifold provides a lightlike metric with a globally spanned radical distribution.

The paper studies how spacelike surfaces evolve in Lorentz-Minkowski space over time.

problem Evolution of spacelike graphic hypersurfaces in Lorentz-Minkowski space.
method Inverse Gauss curvature flow with Neumann boundary condition.
result The evolving surfaces converge to a constant function as time goes to infinity.

The paper studies how certain spacelike surfaces evolve over time in a specific space.

problem Evolution of spacelike graphic hypersurfaces in Lorentz-Minkowski space.
method Inverse mean curvature flow with vanishing Neumann boundary condition.
result The evolving surfaces converge to a hyperbolic plane as time goes to infinity.

Study proves upper semicontinuity of index plus nullity for minimal and H-CMC hypersurfaces.

problem Proving upper semicontinuity of index plus nullity for minimal and H-CMC hypersurfaces.
method Analyzing a weighted eigenvalue problem and using a Lorentz-Sobolev inequality to study eigenfunctions and index/nullity in neck regions.
result Upper semicontinuity of index plus nullity for minimal and H-CMC hypersurfaces proved.

We investigate a variational problem in the Lorentz-Minkowski space ł3ł^3 whose critical points are spacelike surfaces with constant mean curvature and making constant contact angle with a given support surface along its common boundary. We show that if the support surface is a pseudosphere, then the surface is a plana…

2011-12-16abs ↗pdf ↗

The paper classifies ruled surfaces in Lorentz-Minkowski space that are stationary for the moment of inertia.

problem Classifying ruled surfaces in Lorentz-Minkowski space that are stationary for the moment of inertia.
method Maximum principle applications, classification based on causal character of rulings.
result Planes are the only cylindrical stationary surfaces. For non-cylindrical surfaces, classification depends on the causal character of the rulings.

Consider a smooth manifold with a smooth metric which changes bilinear type from Riemann to Lorentz on a hypersurface ΣΣ with radical tangent to ΣΣ. Two natural bilinear symmetric forms appear there, and we use it to analyze the geometry of ΣΣ. We show the way in which these forms control the smooth extensibility ov…

2003-06-10abs ↗pdf ↗

The paper explores polyharmonic hypersurfaces in pseudo-Riemannian space forms.

problem Characterizing polyharmonic hypersurfaces in pseudo-Riemannian space forms.
method Analyzing hypersurfaces with specific properties under given conditions.
result Existence of new families of proper r-harmonic hypersurfaces.

The paper classifies PMCV hypersurfaces in non-flat pseudo-Riemannian space forms.

problem Characterizing PMCV hypersurfaces in non-flat pseudo-Riemannian space forms.
method Analyzing the properties of hypersurfaces with at most two distinct principal curvatures.
result PMCV hypersurfaces are either minimal or locally isoparametric.

Study submanifolds in null hypersurfaces of generalized Robertson-Walker spacetimes.

problem Characterize submanifolds in null hypersurfaces of generalized Robertson-Walker spacetimes.
method Analyze light cones, lightlike cylinders, and null cones in specific spacetimes; provide conditions for conformal diffeomorphism.
result Conditions guaranteeing conformal diffeomorphism to hyperbolic space, round cylinder, and sphere.

Study curves in a spacelike hypersurface using geometric and singularity theory.

problem Investigate the geometry of curves in spacelike hypersurfaces.
method Use techniques of the theory of singularities to describe the shapes and singularities of hyperbolic and de Sitter surfaces.
result Contribute to the study of extrinsic geometry of curves in different ambient spaces.

Study of spacelike submanifolds in spherical RW spacetime, proving a Lorentzian Takahashi theorem.

problem Characterizing stationary spacelike submanifolds in spherical RW spacetime.
method Embedding spherical RW spacetime in Lorentz-Minkowski spacetime, studying Lorentzian hypersurfaces, and applying results to submanifolds.
result Wide extension of Lorentzian Takahashi theorem for stationary spacelike submanifolds.

Criteria for completeness and existence of Cauchy hypersurfaces in spacetimes.

problem Characterizing completeness and existence of Cauchy hypersurfaces in spacetimes.
method Introducing wind Riemannian structures and deriving criteria for completeness and existence of Cauchy hypersurfaces.
result Simple criteria for slices of spacetimes to be Cauchy.

We study conformal Fefferman-Lorentz manifolds introduced by Fefferman. To do so, we introduce Fefferman-Lorentz structure on (2n+2)-dimensional manifolds. By using causal conformal vector fields preserving that structure, we shall establish two theorems on compact Fefferman-Lorentz manifolds: One is the coincidence of…

2009-11-04abs ↗pdf ↗

The study introduces canonical coordinates for Lorentz surfaces and proves a Bonnet-type theorem.

problem Characterizing Lorentz surfaces in R13\mathbb R^3_1.
method Introduces canonical isotropic coordinates and a natural equation for the surfaces.
result Proves a Bonnet-type theorem for Lorentz surfaces of general type.

We study the global theory of linear wave equations for sections of vector bundles over globally hyperbolic Lorentz manifolds. We introduce spaces of finite energy sections and show well-posedness of the Cauchy problem in those spaces. These spaces depend in general on the choice of a time function but it turns out tha…

2014-08-21abs ↗pdf ↗