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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.

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26 results for creases

Paper explores folding patterns of curved creases preserving their geometric properties.

problem Investigating rigid-ruling folding motions of curved crease-rule patterns.
method Deriving conditions for rigid-ruling foldability and analyzing combinations of creases.
result Constant fold-angle creases are only compatible with other constant fold-angle creases.

The paper explores the existence of multiple curved foldings with a common crease pattern.

problem Determining the number of distinct curved foldings with a given crease and crease pattern.
method Analyzing origami maps and their singular sets, focusing on the crease and crease pattern.
result For a non-closed simple arc crease, there are exactly 4 distinct non-congruent curved foldings.

Consider a curve ΓΓ in a domain DD in the plane R2\boldsymbol R^2. Thinking of DD as a piece of paper, one can make a curved folding PP in the Euclidean space R3\boldsymbol R^3. The singular set CC of PP as a space curve is called the crease of PP and the initially given plane curve ΓΓ is called the crease patt…

2019-10-15abs ↗pdf ↗

Classifies and analyzes the stability of black hole event horizon birth points using contact geometry.

problem Classifying and understanding the structural possibilities of black hole crease sets.
method Contact geometry approach, focusing on BigFronts and their Legendrian projections.
result Refined stability discussion of the event horizon birth component and identification of additional components.

The paper proves the existence of a folded annulus with multiple creases.

problem Existence of a folded annulus with multiple creases.
method Analyze developable surfaces, use normal curvature and relative torsion, compute geometric descriptors, prove propagation of folds.
result Proves the existence of a folded annulus with multiple creases.

This paper explores non-periodic folding of Spidron units, revealing nonlinear dynamics.

problem Understanding the kinematics and nonlinear phenomena of Spidron units.
method Analysis of single unit cell kinematics and recursive construction of multiple cells.
result Non-periodic folding restricts isotropic folding as the number of unit cells increases.

A single-vertex origami is a piece of paper with straight-line rays called creases emanating from a fold vertex placed in its interior or on its boundary. The Single-Vertex Origami Flattening problem asks whether it is always possible to reconfigure the creased paper from any configuration compatible with the metric, t…

2010-03-17abs ↗pdf ↗

The Positive Mass Theorem for special singular initial data.

problem Proving the positive mass theorem for data with a codimension one singularity.
method Using asymptotically flat spin initial data sets with matching Bartnik data condition involving spacetime rotations.
result Established a spacetime positive mass theorem and rigidity statement.

Classifies embeddings of surfaces in 3D space with product structure.

problem Classifying embeddings of surfaces in Euclidean 3-space with product structure.
method Investigates embeddings of a surface in R2imesR\mathbb{R}^2 imes \mathbb{R}, focusing on critical points and isotopy classes.
result Provides necessary and sufficient conditions for realizing certain configurations of curves as crease sets.

The study explores isometric deformations of surfaces of translation.

problem Determine the ways surfaces of translation bend isometrically.
method Analyzes existence conditions and provides closed-form expressions for infinitesimal and finite bendings of surfaces of translation.
result Surfaces of translation admit various infinitesimal and finite bendings, including purely torsional and torsion-free.

Unified theory solves strain compatibility and elasticity of origami metamaterials.

problem Understanding and controlling the morphing paths of origami metamaterials.
method Unified theory for a wide array of origami tessellations, solving strain compatibility and elasticity.
result Origami metamaterials exhibit equal but opposite in-plane and out-of-plane Poisson's ratios and bending energy depends on strain gradient.

New solutions found for bending of flat surfaces and origami structures.

problem Understanding the energy-efficient bending modes of origami tessellations and corrugated shells.
method Direct construction of closed-form solutions for surfaces of translation.
result Three inextensional modes identified for surfaces of translation, including stretching, bending, and twisting.