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On topology and electromagnetism

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2012-02
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Wiley-Blackwell
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© 2012 by WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
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[1] M. Arrayás and J. L. Trueba, Ann. Phys. (Berlin) 524, 71–75 (2012). [2] A. F. Rañada, Lett.Math. Phys. 18, 97 (1989). [3] A. F. Rañada, J. Phys. A:Math. Gen. 23, L815 (1990). [4] A. F. Rañada, J. Phys. A:Math. Gen. 25, 1621 (1992). [5] H. Hopf,Math. Ann. 104, 637 (1931). [6] A. F. Rañada and J. L. Trueba, Modern Nonlinear Optics, Part III. Electromagnetism, Vol. 119, edited by I. Prigogine and S. A. Rice (JohnWiley and Sons, New York, 2001) pp. 197– 253. [7] A. F. Rañada, Phys. Lett. A 310, 134 (2003). [8] W. T.M. Irvine and D. Bouwmeester, Nature Phys. 4, 716 (2008). [9] Lord Kelvin, Trans. R. Soc. Edinburgh 25, 217 (1869). [10] P. A.M. Dirac, Proc. R. Soc. Lond. A 133, 60 (1931). [11] Y. Aharonov and D. Bohm, Phys. Rev. 115, 485 (1959). [12] M. Atiyah, The Geometry and Physics of Knots (Cambridge University Press, Cambridge, 1990). [13] C. Godbillon, Géometrie différentielle et mécanique analytique (Hermann, Paris, 1969). [14] F.W. Hehl and Y.N. Obukhov, Foundations of Classical Electrodynamics: Charge, Flux andMetric (Birkhäuser, Boston, 2003). [15] M. Arrayás and J. L. Trueba, arXiv:1106.1122v1 [hep-th] (2011). [16] A. F. Rañada and J. L. Trueba, Phys. Lett. B 422, 196 (1998).
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