We study Veselago\u27s lens with arbitrary index of refraction and characteristic impedance. Using a full wave optics calculation, we show that this lens can be considered as an imaging system and we derive the appropriate lens formula. The lens with arbitrary index and impedance retains some of the properties of the matched lens, such as the invariance of its optical axis, three-dimensional imaging and easy manufacturing, but it loses the property of sub-wavelength resolution. We also show that identical results can be obtained for the impedance matched lens in the framework of paraxial geometrical optics, from which it can be inferred that optical systems containing such a lens can be studied and designed using traditional ray-tracing too...
Due to dispersion, light with different wavelengths, or colors, is refracted at different angles. Ou...
We describe the properties of birefringent left-handed metamaterials and introduce the concept of a ...
Lens design for focusing and imaging has been optimized through centuries of developments; however, ...
We study Veselago's lens with arbitrary index of refraction and characteristic impedance. Using a fu...
ico niv orm d c e d and impedance retains some of the properties of the matched lens, such as the in...
We study numerically, by means of the pseudospectral time-domain method, the unique features of imag...
The aberrations of a spherical lens composed of left-handed materials are studied in this letter. Fi...
Impedance matching at the surface of left-handed materials (LHM) is required for certain application...
Given a surface which is not necessarily rotationally symmetric, we design a second surface such tha...
During the last years the concept of the perfect lens, made of left handed material having negative ...
This paper presents the exact closed-form solution for a new planar lens, hereinafter referred to as...
Luneburg lens and Maxwell-fisheye lens are well-known microwave and optical devices with distinct fo...
This paper presents an idea for designing a planar Luneburg lens inside a parallel plate waveguide b...
This paper tries to settle down a heated debate on perfect lenses without negative refraction.Intern...
Abstract — This paper presents the characterization of a multilayered volumetric negative-refractiv...
Due to dispersion, light with different wavelengths, or colors, is refracted at different angles. Ou...
We describe the properties of birefringent left-handed metamaterials and introduce the concept of a ...
Lens design for focusing and imaging has been optimized through centuries of developments; however, ...
We study Veselago's lens with arbitrary index of refraction and characteristic impedance. Using a fu...
ico niv orm d c e d and impedance retains some of the properties of the matched lens, such as the in...
We study numerically, by means of the pseudospectral time-domain method, the unique features of imag...
The aberrations of a spherical lens composed of left-handed materials are studied in this letter. Fi...
Impedance matching at the surface of left-handed materials (LHM) is required for certain application...
Given a surface which is not necessarily rotationally symmetric, we design a second surface such tha...
During the last years the concept of the perfect lens, made of left handed material having negative ...
This paper presents the exact closed-form solution for a new planar lens, hereinafter referred to as...
Luneburg lens and Maxwell-fisheye lens are well-known microwave and optical devices with distinct fo...
This paper presents an idea for designing a planar Luneburg lens inside a parallel plate waveguide b...
This paper tries to settle down a heated debate on perfect lenses without negative refraction.Intern...
Abstract — This paper presents the characterization of a multilayered volumetric negative-refractiv...
Due to dispersion, light with different wavelengths, or colors, is refracted at different angles. Ou...
We describe the properties of birefringent left-handed metamaterials and introduce the concept of a ...
Lens design for focusing and imaging has been optimized through centuries of developments; however, ...