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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.

168,657 papers · 148 categories

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201402602803 · Jun 202019922001200920172026
48 results for Wave Front set

The paper defines wave-front singularities using explicit analytic functions.

problem Characterizing the images of wave-front singularities.
method Explicit resultant computations to construct main-analytic functions.
result Explicit formulas for main-analytic functions of wave-front singularities of types A, D, and E.

We characterize singularities of focal surfaces of wave fronts in terms of differential geometric properties of the initial wave fronts. Moreover, we study relationships between geometric properties of focal surfaces and geometric invariants of the initial wave fronts.

2018-04-17abs ↗pdf ↗

Study focal surfaces of wave fronts with unbounded curvatures.

problem Characterizing singularities of focal surfaces near non-degenerate singular points.
method Characterizations based on types of singularities and geometrical properties of initial fronts.
result Investigation of Gaussian curvature behavior of focal surfaces.

We give criteria for which a principal curvature becomes a bounded CC^\infty-function at non-degenerate singular points of wave fronts by using geometric invariants. As applications, we study singularities of parallel surfaces and extended distance squared functions of wave fronts. Moreover, we relate these singularit…

2016-12-02abs ↗pdf ↗

Study compactness and continuity in Sobolev wave front set spaces for smooth vector bundles.

problem Compactness and continuity in Sobolev wave front set spaces for smooth vector bundles.
method Introduced a locally convex topology, extended compactness theorem, studied pseudo-differential operators, and applied to microlocal defect measures.
result Extended microlocal defect measures and compensated compactness theorem to Sobolev wave front set spaces.

Study finds rigid submanifolds in spacelike waves under specific conditions.

problem Understanding rigidity of submanifolds in spacelike waves.
method Proves submanifolds are contained in characteristic lightlike hypersurfaces under certain conditions.
result Complete codimension two submanifolds are wavefronts under specific conditions.

In this paper, we discuss the recognition problem for A_k-type singularities on wave fronts. We give computable and simple criteria of these singularities, which will play a fundamental role in generalizing the authors' previous work "the geometry of fronts" for surfaces. The crucial point to prove our criteria for A_k…

2008-04-04abs ↗pdf ↗

In this note we present a description of wave front evolving from an algebraic hypersurface by means of a pull-back of the discriminantal loci of a tame polynomial via a polynomial mapping. As an application we give examples of wave fronts which define free/almost free divisors near the focal point.

2010-09-29abs ↗pdf ↗

High frequency limit for most of wave phenomena is known as quasiclassical limit or ray optics limit. Propagation of waves in this limit is described in terms of wave fronts and rays. Wave front is a surface of constant phase whose points are moving along rays. As it appears, their motion can be described by Hamilton e…

2001-08-23abs ↗pdf ↗

We give a definition of `coherent tangent bundles', which is an intrinsic formulation of wave fronts. In our application of coherent tangent bundles for wave fronts, the first fundamental forms and the third fundamental forms are considered as induced metrics of certain homomorphisms between vector bundles. They satisf…

2009-10-19abs ↗pdf ↗

The calculus correspondence has been known to exist between generic pedal evolutions and generic wave front evolutions. In this paper, we first extend the known results on the calculus correspondence to evolutions with multi-parameters, and then give applications of calculus correspondence. Moreover, we discuss the pos…

2012-06-25abs ↗pdf ↗

This paper describes caustics of wave fronts reflected by a surface.

problem Understanding the geometry of caustics formed by wave fronts reflected by a surface.
method Purely geometric description of caustics, clarifying their dependence on surface characteristics.
result Clarifies the geometry and topology of caustics formed by wave fronts after reflection from a mirror surface.

Recently Arnold's $\St$ and J±J^{\pm} invariants of generic planar curves have been generalized to the case of generic planar wave fronts. We generalize these invariants to the case of wave fronts on an arbitrary surface FF. All invariants satisfying the axioms which naturally generalize the axioms used by Arnold are …

1999-01-28abs ↗pdf ↗

We review the properties of transversality of distributions with respect to submersions. This allows us to construct a convolution product for a large class of distributions on Lie groupoids. We get a unital involutive algebra $\cE\_{r,s}'(G,Ω^{1/2})$ enlarging the convolution algebra C_c(G,Ω1/2)C^\infty\_c(G,Ω^{1/2}) associate…

2015-02-06abs ↗pdf ↗

It is well known that Lagrangian dynamical systems naturally arise in describing wave front dynamics in the limit of short waves (which is called pseudoclassical limit or limit of geometrical optics). Wave fronts are the surfaces of constant phase, their points move along lines which are called rays. In non-homogeneous…

2001-12-10abs ↗pdf ↗

Any surface can be foliated into equipotential hypersurfaces of the level sets. A current result is that the contours are the progressing wave fronts of a certain hyperbolic partial differential equation, a wave equation. It is connected with the gradient lines, as well as with a corresponding eikonal equation. The lev…

2013-09-12abs ↗pdf ↗

Let M2M^2 be an oriented 2-manifold and f:M2R3f:M^2\to R^3 a CC^\infty-map. A point pM2p\in M^2 is called a singular point if ff is not an immersion at pp. The map ff is called a front (or wave front), if there exists a unit CC^\infty-vector field νν such that the image of each tangent vector df(X)df(X) (XTM2)(X\in TM^2) is …

2007-04-21abs ↗pdf ↗

Two wave fronts W1W_1 and W2W_2 that originated at some points of the manifold MnM^n are said to be causally related if one of them passed through the origin of the other before the other appeared. We define the causality relation invariant CR(W1,W2)CR (W_1, W_2) to be the algebraic number of times the earlier born front pass…

2002-07-24abs ↗pdf ↗

The paper improves Zakalyukin's lemma for frontals and applies it to surface singularities.

problem Improving the conditions under which wave front germs imply map germs.
method Generalization of Zakalyukin's lemma for frontals and applications to surface singularities.
result The paper provides a more general version of Zakalyukin's lemma for map germs.

Study describes singularities of distance squared functions on singular surfaces.

problem Characterizing singularities of distance squared functions on singular surfaces.
method Using smooth map-germs SkS_k, BkB_k, CkC_k, and F4F_4 singularities, the study describes singularities via blowing-ups.
result Characterization of singularities of wave-fronts and caustics of singular surfaces.

It is well-known that the unit cotangent bundle of any Riemannian manifold has a canonical contact structure. A surface in a Riemannian 3-manifold is called a (wave) front if it is the projection of a Legendrian immersion into the unit cotangent bundle. We shall give easily-computable criteria for a singular point on a…

2004-01-12abs ↗pdf ↗

A general class of Lorentzian metrics, M0xR2M_0 x R^2, ds2=<.,.>+2dudv+H(x,u)du2ds^2 = <.,.> + 2 du dv + H(x,u) du^2, with (M0,<.,.>(M_0, <.,.> any Riemannian manifold, is introduced in order to generalize classical exact plane fronted waves. Here, we start a systematic study of their main geodesic properties: geodesic completeness, geodesic connected…

2002-11-05abs ↗pdf ↗

Study geometric isomorphisms between spacetime solutions using paracausal metrics.

problem Geometric isomorphisms between solutions of normally hyperbolic operators over different spacetimes.
method Introduce paracausal relation to define isomorphisms between spacetime metrics and use Møller operators.
result Møller operators preserve causal propagators and natural symplectic forms on initial data.

Paper proves stability of multi-dimensional rarefaction waves in gas dynamics.

problem Challenges in constructing multi-dimensional rarefaction waves in gas dynamics.
method Geometric Weighted Energy Method (GWEM) to overcome derivative losses.
result Established nonlinear stability of multi-dimensional rarefaction waves for compressible Euler equations.

Cuspidal edges and swallowtails are typical non-degenerate singular points on wave fronts in the Euclidean 33-space. Their first fundamental forms belong to a class of positive semi-definite metrics called "Kossowski metrics". A point where a Kossowski metric is not positive definite is called a singular point or a se…

2017-10-09abs ↗pdf ↗

Study uses reinforcement learning to optimize metachronal paddling at low Reynolds number.

problem Optimizing metachronal paddling strategies for efficient swimming at low Reynolds numbers.
method Applied reinforcement learning to a swimmer model with varying paddle spacings.
result The reinforcement learning algorithm selects a back-to-front metachronal wave-like stroke as the most efficient, regardless of the number of paddles.

In the plane, we study the transform RγfR_γf of integrating a unknown function ff over circles centered at a given curve γγ. This is a simplified model of SAR, when the radar is not directed but has other applications, like thermoacoustic tomography, for example. We study the problem of recovering the wave front set $…

2012-05-04abs ↗pdf ↗

We present an axiomatic/synthetic account of the Huygens Principle of wave fronts. The primitive notions are "touching", and (a weak notion of ) metric. The paper simplifies some of the exposition of the author's "Metric spaces and SDG", Theory and Appl. of Categories 32 (2017), 803-822

2018-04-16abs ↗pdf ↗

A world sheet in Lorentz-Minkowski space is a timelike submanifold consisting of a one-parameter family of spacelike submanifolds in Lorentz-Minkowski space. In this paper we investigate differential geometry of world sheets in Lorentz-Minkowski space as an application of the theory of big wave fronts.

2014-11-26abs ↗pdf ↗

Neural networks are increasingly used in complex (data-driven) simulations as surrogates or for accelerating the computation of classical surrogates. In many applications physical constraints, such as mass or energy conservation, must be satisfied to obtain reliable results. However, standard machine learning algorithm…

2019-04-29abs ↗pdf ↗

In a joint work with Saji, the second and the third authors gave an intrinsic formulation of wave fronts and proved a realization theorem of wave fronts in space forms. As an application, we show that the following four objects are essentially same; * conformally flat n-manifolds (n>=3) with admissible singular points …

2010-01-25abs ↗pdf ↗

Motivated by the study of wave fronts in anisotropic media, we propose an incidence geometry of anisotropic spheres in a Finsler-Minkowski space. An anisotropic version of the Laguerre functional is considered. In some circumstances, this functional can be used to determine that two wavefronts observed at distinct time…

2014-03-31abs ↗pdf ↗