Abstract
Extremely anisotropic metal-dielectric multilayer metamaterials are designed to have the effective permittivity tensor of a transverse component (parallel to the interfaces of the multilayer) with zero real part and a longitudinal component (normal to the interfaces of the multilayer) with ultra-large imaginary part at the same wavelength, including the optical nonlocality analysis based on the transfer-matrix method. The diffraction-free deep-subwavelength optical beam propagation with near-zero phase variation in the designed multilayer stack due to the near-flat iso-frequency contour is demonstrated and analyzed, including the effects of the multilayer period and the material loss.
| Original language | English |
|---|---|
| Article number | 035101 |
| Journal | Journal of Optics (United Kingdom) |
| Volume | 17 |
| Issue number | 3 |
| DOIs | |
| State | Published - 2015 |
Keywords
- diffraction-free near-zero phase variation propagation
- extreme anisotropy
- multilayer metamaterials
- optical nonlocality
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