Research article

An approach to energy and elastic for curves with extended Darboux frame in Minkowski space

  • Received: 20 November 2019 Accepted: 03 January 2020 Published: 09 January 2020
  • MSC : 53A04

  • In this paper, we construct the energy for the ED-frame field of the first and second kind on an orientable hypersurface in Minkowski space. We obtain the geometric properties of some graphics by way of energy. We apply totally diverse discussion and approach to illustrate bending energy functional for the ED-frame field of the first and second kind. Finally, we have a new relation for angle and energy of the curve on an orientable hypersurface in Minkowski space.

    Citation: Talat Körpinar, Yasin Ünlütürk. An approach to energy and elastic for curves with extended Darboux frame in Minkowski space[J]. AIMS Mathematics, 2020, 5(2): 1025-1034. doi: 10.3934/math.2020071

    Related Papers:

  • In this paper, we construct the energy for the ED-frame field of the first and second kind on an orientable hypersurface in Minkowski space. We obtain the geometric properties of some graphics by way of energy. We apply totally diverse discussion and approach to illustrate bending energy functional for the ED-frame field of the first and second kind. Finally, we have a new relation for angle and energy of the curve on an orientable hypersurface in Minkowski space.


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    [1] C. M. Wood, On the Energy of a Unit Vector Field, Geom. Dedic., 64 (1997), 319-330. doi: 10.1023/A:1017976425512
    [2] O. Gil Medrano, Relationship between volume and energy of vector fields, Differ. Geom. Appl., 15 (2001), 137-152. doi: 10.1016/S0926-2245(01)00053-5
    [3] T. Körpınar, New Characterization for Minimizing Energy of Biharmonic Particles in Heisenberg Spacetime, Int. J. Theor. Phys., 53 (2014), 3208-3218. doi: 10.1007/s10773-014-2118-5
    [4] G. Kirchhoff, Über Das Gleichgewicht und die Bewegung einer elastichen Scheibe, Crelles J., 40 (1850), 51-88.
    [5] E. Catmull, J. Clark, Recursively generated b-spline surfaces on arbitrary topological surfaces, Comput. Aided Design, 10 (1978), 350-355. doi: 10.1016/0010-4485(78)90110-0
    [6] T. Lopez-Leon, V. Koning, K.B.S. Devaiah, Frustrated nematic order in spherical geometries, Nat. Phys., 7 (2011), 391-394. doi: 10.1038/nphys1920
    [7] T. Lopez-Leon, A. A. Fernandez-Nieves, M. Nobili, Nematic-Smectic Transition in Spherical Shells, Phys. Rev. Lett., 106 (2011), 247802.
    [8] J. Guven, D. M. Valencia, J. Vazquez-Montejo, Environmental bias and elastic curves on surfaces, Phys. A: Math Theory, 47 (2014), 355201.
    [9] P. M. Chacon, A. M. Naveira, J. M. Weston, On the Energy of Distributions, with Application to the Quaternionic Hopf Fibrations, Monatsh. Math., 133 (2001), 281-294. doi: 10.1007/PL00010092
    [10] T. Körpinar, Tangent bimagnetic curves in terms of inextensible flows in space, Int. J. Geom. Methods in M., 16 (2019), 1950018-3202.
    [11] Y. Ünlütürk, T. Körpınar and M. Çimdiker, On k-type pseudo null slant helices due to the Bishop frame in Minkowski 3-space $E_1^3$, AIMS Mathematics, 5 (2020), 286-299.
    [12] T. Körpınar, On T-Magnetic Biharmonic Particles with Energy and Angle in the Three Dimensional Heisenberg Group H, Adv. Appl. Clifford Algebras, 28 (2018), 1.
    [13] T. Körpınar, A New Version of Normal Magnetic Force Particles in 3D Heisenberg Space, Adv. Appl. Clifford Algebras, 28 (2018), 9.
    [14] T. Körpınar, A Note on Fermi-Walker derivative with constant energy for tangent indicatrix of slant helix in the Lie groups, Journal of Advanced Physics, 7 (2018), 230-234.
    [15] T. Körpinar, R. C. Demirkol, Z. Körpinar, Soliton propagation of electromagnetic field vectors of polarized light ray traveling in a coiled optical fiber in the ordinary space, Int. J. Geom. Methods M., 16 (2019), 1950117
    [16] T. Körpinar, R. C. Demirkol, Z. Körpinar, Soliton propagation of electromagnetic field vectors of polarized light ray traveling in a coiled optical fiber in Minkowski space with Bishop equations, The European Physical Journal D, 73 (2019), 203.
    [17] T. Körpinar, A new version of energy for involute of slant helix with bending energy in the Lie groups, Acta Scientiarum. Technology, 41 (2019), e36569
    [18] Z. Körpinar, On comparison of approximate solutions for linear and nonlinear schrodinger equations, Acta Scientiarum. Technology, 41, (2019), e36596.
    [19] T. Körpınar, R. Cem Demirkol, Z. Körpınar, Soliton propagation of electromagnetic field vectors of polarized light ray traveling along with coiled optical fiber on the unit 2-sphere S2, Rev. Mex. de Fis., 65 (2019), 626-633
    [20] B. O'Neill, Semi-Riemannian Geometry, Academic Press, New York, 1983.
    [21] B. U. Düldül, Extended Darboux frame field in Minkowski space-time $E_1^4$, Malaya Journal of Matematik, 6 (2018), 473-477. doi: 10.26637/MJM0603/0002
    [22] P. M. Chacon, A. M. Naveira, Corrected Energy of Distrubution on Riemannian Manifolds, Osaka J. Math., 41 (2004), 97-105.
    [23] A. Altin, On the energy and Pseduoangle of Frenet Vector Fields in $R_v^n$, Ukranian Mathematical J., 63 (2011), 969-975. doi: 10.1007/s11253-011-0556-2
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