Recently important efforts have been dedicated to the realization of a new kind of photonic crystals, known as photonic quasicrystals, in which the lack of the translational symmetry is compensated by rotational symmetries not achievable by the conventional periodic crystals. Here we show a novel approach to their fabrication based on the use of a programmable Spatial Light Modulator encoding Computer-Generated Holograms. Using this single beam technique we fabricated Penrose-tiled structures possessing rotational symmetry up to 23-fold, and a twodimensional Thue-Morse structure, which is an aperiodic structure not achievable by multiple beam holography
We show that a two-dimensional 12-fold quasicrystal tiled with squares and triangles can be generate...
Quasi-crystal structures do not present a full spatial periodicity but are nevertheless constructed ...
Quasi-crystal structures do not present a full spatial periodicity but are nevertheless constructed ...
Recently important efforts have been dedicated to the realization of a new kind of photonic crystals...
Recently important efforts have been dedicated to the realization of a new kind of photonic crystals...
Recently important efforts have been dedicated to the realization of a new kind of photonic crystals...
Recently important efforts have been dedicated to the realization of a new kind of photonic crystals...
Large-area three-dimensional Penrose-type photonic quasicrystals are fabricated through a holographi...
Optical interference holography has been proved to be a useful technique in fabricating periodic pho...
The technique of Spatial Light Modulation based on Computer-generated Holography has been successful...
Photonic band-gap materials are artificially periodic engineered materials with which we can control...
Quasicrystals, realized in metal alloys, are a class of lattices exhibiting symmetries that fall out...
Photonic crystals, which can mold the flow of light, have attracted a great deal of attention from p...
Large-area three-dimensional Penrose-type photonic quasicrystals are fabricated through a holographi...
The introduction of defects in photonic lattices generally allows to control the localization and th...
We show that a two-dimensional 12-fold quasicrystal tiled with squares and triangles can be generate...
Quasi-crystal structures do not present a full spatial periodicity but are nevertheless constructed ...
Quasi-crystal structures do not present a full spatial periodicity but are nevertheless constructed ...
Recently important efforts have been dedicated to the realization of a new kind of photonic crystals...
Recently important efforts have been dedicated to the realization of a new kind of photonic crystals...
Recently important efforts have been dedicated to the realization of a new kind of photonic crystals...
Recently important efforts have been dedicated to the realization of a new kind of photonic crystals...
Large-area three-dimensional Penrose-type photonic quasicrystals are fabricated through a holographi...
Optical interference holography has been proved to be a useful technique in fabricating periodic pho...
The technique of Spatial Light Modulation based on Computer-generated Holography has been successful...
Photonic band-gap materials are artificially periodic engineered materials with which we can control...
Quasicrystals, realized in metal alloys, are a class of lattices exhibiting symmetries that fall out...
Photonic crystals, which can mold the flow of light, have attracted a great deal of attention from p...
Large-area three-dimensional Penrose-type photonic quasicrystals are fabricated through a holographi...
The introduction of defects in photonic lattices generally allows to control the localization and th...
We show that a two-dimensional 12-fold quasicrystal tiled with squares and triangles can be generate...
Quasi-crystal structures do not present a full spatial periodicity but are nevertheless constructed ...
Quasi-crystal structures do not present a full spatial periodicity but are nevertheless constructed ...