نتایج جستجو برای: forbidden photonic band

تعداد نتایج: 163847  

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2009
Marian Florescu Salvatore Torquato Paul J Steinhardt

We present designs of 2D, isotropic, disordered, photonic materials of arbitrary size with complete band gaps blocking all directions and polarizations. The designs with the largest band gaps are obtained by a constrained optimization method that starts from a hyperuniform disordered point pattern, an array of points whose number variance within a spherical sampling window grows more slowly tha...

Journal: :Physical review letters 1989
Yablonovitch Gmitter

We employ the concepts of band theory to describe the behavior of electromagnetic waves in three-dimensionally periodic face-centered-cubic (fcc) dielectric structures. This can produce a "photonic band gap" in which optical modes, spontaneous emission, and zero point fluctuations are all absent. In the course of a broad experimental survey, we have found that most fcc dielectric structures hav...

2001
Shangping Guo Sacharia Albin

A simple implementation of the full-vectorial plane wave method is presented for modeling photonic crystals with regular ‘atoms’ using MATLAB. We calculate the analytical Fourier transform for an atom and use the shift property to obtain the Fourier transform for any arbitrary supercell consisting of a finite number of atoms, including the quasiperiodic case. MATLAB source code for the implemen...

2004
Wounjhang Park Jeong-Bong Lee

We report a tunable nanophotonic device concept based on flexible photonic crystal, which is comprised of a periodic array of high-index dielectric material and a low-index flexible polymer. Tunability is achieved by applying mechanical force with nano-/microelectromechanical system actuators. The mechanical stress induces changes in the periodicity of the photonic crystal and consequently modi...

1997
Cheryl M. Anderson Konstantinos P. Giapis

The size of absolute band gaps in two-dimensional photonic crystals is often limited by band degeneracies at the lattice symmetry points. By reducing the lattice symmetry, these degeneracies can be lifted to increase the size of existing photonic band gaps, or to create new gaps where none existed for the more symmetric structure. Specifically, symmetry reduction by the addition of different di...

2014
Keiichi Edagawa

Photonic crystals consist of artificial periodic structures of dielectrics, which have attracted much attention because of their wide range of potential applications in the field of optics. We may also fabricate artificial amorphous or quasicrystalline structures of dielectrics, i.e. photonic amorphous materials or photonic quasicrystals. So far, both theoretical and experimental studies have b...

Journal: :Optics express 2007
Hua Zhang L Andrea Dunbar Giacomo Scalari Romuald Houdré Jérôme Faist

We combine photonic crystal and quantum cascade band engineering to create an in-plane laser at terahertz frequency. We demonstrate that such photonic crystal lasers strongly improve the performances of terahertz quantum cascade material in terms of threshold current, waveguide losses, emission mode selection, tunability and maximum operation temperature. The laser operates in a slow-light regi...

2000
M.D.B. Charlton M. E. Zoorob M. C. Netti H. Kemhadjian

Photonic crystal waveguide devices incorporating line-defect waveguide bends have been fabricated. In this paper we present preliminary experimental analysis of these structures. Although evidence of photonic band-gap effects are observed in the spectra, transmission efficiency was found to be extremely low due to significant up-scattering losses from the holes. In order to quantify this loss m...

Journal: :Physical review letters 2011
M D Leistikow A P Mosk E Yeganegi S R Huisman A Lagendijk W L Vos

We present time-resolved emission experiments of semiconductor quantum dots in silicon 3D inverse-woodpile photonic band gap crystals. A systematic study is made of crystals with a range of pore radii to tune the band gap relative to the emission frequency. The decay rates averaged over all dipole orientations are inhibited by a factor of 10 in the photonic band gap and enhanced up to 2× outsid...

1998
D. F. Sievenpiper E. Yablonovitch J. N. Winn S. Fan P. R. Villeneuve J. D. Joannopoulos

We introduce a new type of metallo-dielectric photonic band gap structure (PBG), intentionally incorporating very strong capacitive interactions between the periodic metallic islands. The band gaps become huge, with the lower band edge frequency being pushed down by the capacitive interaction between metallic islands, while the upper band edge frequency continues to depend primarily on the latt...

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