Negative refraction
Top Cited Papers
Open Access
- 1 May 2004
- journal article
- research article
- Published by Taylor & Francis in Contemporary Physics
- Vol. 45 (3) , 191-202
- https://doi.org/10.1080/00107510410001667434
Abstract
Light bends the wrong way in materials where both ε and μ are negative as was pointed out in 1968, but the absence of natural materials with this property led to neglect of the subject until 1999 when it was shown how to make artificial materials, metamaterials, with negative μ. The rapid advance of the subject since that date, both in theory and experiment, is reflected in the exponential growth of publications now at the 200 per year level and still growing. This interest is explained by the sudden availability of a qualitatively different class of electromagnetic materials combined with the quite startling properties which these materials appear to have; all of which provokes debate as each new facet of their behaviour is revealed. Experiment has been vital to resolution of controversy and has chiefly been in the microwave region of the spectrum though there is potential in the optical region currently being explored by several groups.Keywords
This publication has 33 references indexed in Scilit:
- Observation of the Inverse Doppler EffectScience, 2003
- Focusing light using negative refractionJournal of Physics: Condensed Matter, 2003
- Comment on “Left-Handed Materials Do Not Make a Perfect Lens”Physical Review Letters, 2003
- Erratum: Left-Handed Materials Do Not Make a Perfect Lens [Phys. Rev. Lett.PRLTAO0031-900788, 207403 (2002)]Physical Review Letters, 2003
- Pulsed and CW Gaussian beam interactions with double negative metamaterial slabsOptics Express, 2003
- Comment on “Wave Refraction in Negative-Index Media: Always Positive and Very Inhomogeneous”Physical Review Letters, 2003
- Left-Handed Materials Do Not Make a Perfect LensPhysical Review Letters, 2002
- Formation of a dodecagonal phase in the nano-sized Ag-Pt multilayers upon solid-state reactionJournal of Physics: Condensed Matter, 2001
- Theory of light propagation in strongly modulated photonic crystals: Refractionlike behavior in the vicinity of the photonic band gapPhysical Review B, 2000
- Refraction and geometry in Maxwell's equationsJournal of Modern Optics, 1996