Curves in the Lorentz-Minkowski plane with curvature depending on their position

Author:

Castro Ildefonso12,Castro-Infantes Ildefonso3,Castro-Infantes Jesús4

Affiliation:

1. Departamento de Matemáticas, Universidad de Jaén , 23071 Jaén , Spain

2. Institute of Mathematics (IEMath-GR) , 18001 Granada , Spain

3. Departamento de Matemáticas, Universidad de Murcia , 30100 Murcia , Spain

4. Departamento de Geometría y Topología, Universidad de Granada , 18071 Granada , Spain

Abstract

Abstract Motivated by the classical Euler elastic curves, David A. Singer posed in 1999 the problem of determining a plane curve whose curvature is given in terms of its position. We propound the same question in the Lorentz-Minkowski plane, focusing on spacelike and timelike curves. In this article, we study those curves in L 2 {{\mathbb{L}}}^{2} whose curvature depends on the Lorentzian pseudodistance from the origin, and those ones whose curvature depends on the Lorentzian pseudodistance through the horizontal or vertical geodesic to a fixed lightlike geodesic. Making use of the notions of geometric angular momentum (with respect to the origin) and geometric linear momentum (with respect to the fixed lightlike geodesic), respectively, we get two abstract integrability results to determine such curves through quadratures. In this way, we find out several new families of Lorentzian spiral, special elastic and grim-reaper curves whose intrinsic equations are expressed in terms of elementary functions. In addition, we provide uniqueness results for the generatrix curve of the Enneper surface of second kind and for Lorentzian versions of some well-known curves in the Euclidean setting, like the Bernoulli lemniscate, the cardioid, the sinusoidal spirals and some non-degenerate conics. We are able to get arc-length parametrizations of them and they are depicted graphically.

Publisher

Walter de Gruyter GmbH

Subject

General Mathematics

Reference13 articles.

1. D. Singer, Curves whose curvature depends on distance from the origin, Amer. Math. Monthly 106 (1999), 835–841.

2. D. Singer, Lectures on elastic curves and rods, curvature and variational modelling in physics and biophysics, AIP Conference Proceedings, vol. 1002, 2008, pp. 3–32.

3. I. M. Mladenov, M. T. Hadzhilazova, P. A. Djondjorov, and V. M. Vassilev, On the generalized Sturmian spirals, C. R. Acad. Sci. Bulg. 64 (2011), 633–640.

4. P. I. Marinov, M. T. Hadzhilazova, and I. M. Mladenov, Elastic Sturmian spirals, C. R. Acad. Sci. Bulg. 67 (2014), 167–172.

5. I. Castro and I. Castro-Infantes, Plane curves with curvature depending on distance to a line, Diff. Geom. Appl. 44 (2016), 77–97.

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