English

Fresnel versus Kummer surfaces: geometrical optics in dispersionless linear (meta)materials and vacuum

General Relativity and Quantum Cosmology 2014-01-17 v1 Optics

Abstract

Geometrical optics describes, with good accuracy, the propagation of high-frequency plane waves through an electromagnetic medium. Under such approximation, the behaviour of the electromagnetic fields is characterised by just three quantities: the temporal frequency ω\omega, the spatial wave (co)vector kk, and the polarisation (co)vector aa. Numerous key properties of a given optical medium are determined by the Fresnel surface, which is the visual counterpart of the equation relating ω\omega and kk. For instance, the propagation of electromagnetic waves in a uniaxial crystal, such as calcite, is represented by two light-cones. Kummer, whilst analysing quadratic line complexes as models for light rays in an optical apparatus, discovered in the framework of projective geometry a quartic surface that is linked to the Fresnel one. Given an arbitrary dispersionless linear (meta)material or vacuum, we aim to establish whether the resulting Fresnel surface is equivalent to, or is more general than, a Kummer surface.

Keywords

Cite

@article{arxiv.1401.4077,
  title  = {Fresnel versus Kummer surfaces: geometrical optics in dispersionless linear (meta)materials and vacuum},
  author = {Alberto Favaro and Friedrich W. Hehl},
  journal= {arXiv preprint arXiv:1401.4077},
  year   = {2014}
}

Comments

Invited lecture at "Electromagnetic Spacetimes", Wolfgang Pauli Institute, Vienna, 19--23 Nov 2012