We describe the use of novel MOCVD methods designed to infill templated structures based upon synthetic opals in order to provide increased refractive index contrast necessary for the creation of full photonic bandgap materials. The method employed is illustrated by considering the production of structures containing III-V material GaP and using this example, we demonstrate the ability to achieve levels of infill higher than any previously reported. We describe the use of novel MOCVD chemistry in the creation of a potentially new class of inorganic material, potentially capable of direct luminescence from within the photonic bandgap system
The growth of high-quality stoichiometric indium phosphide by atmospheric pressure metal±organic che...
The growth of high-quality stoichiometric indium phosphide by atmospheric pressure metal±organic che...
The growth of high-quality stoichiometric indium phosphide by atmospheric pressure metal±organic che...
We describe the use of novel MOCVD methods designed to infill templated structures based upon synthe...
We describe the use of novel MOCVD methods designed to infill templated structures based upon synth...
We describe the use of novel MOCVD methods designed to infill templated structures based upon synth...
Opals consist of an ordered array of SiO2 spheres. This leads to a modulation of the refractive inde...
Opals consist of an ordered array of SiO2 spheres. This leads to a modulation of the refractive inde...
Opals consist of an ordered array of SiO2 spheres. This leads to a modulation of the refractive inde...
Opals consist of an ordered array of SiO2 spheres. This leads to a modulation of the refractive inde...
Metal Organic Chemical Vapour Deposition (MOCVD) is being used successfully in production and resear...
Metal Organic Chemical Vapour Deposition (MOCVD) is being used successfully in production and resear...
In the late eighties, a new class of materials, known as photonic crystals (PCs), emerged enabling t...
The past decade and a half has seen the rapid emergence of a new material class known as photonic cr...
The metalorganic chemical vapor deposition (MOCVD) of II-VI semiconducting compounds (II-IVs) has be...
The growth of high-quality stoichiometric indium phosphide by atmospheric pressure metal±organic che...
The growth of high-quality stoichiometric indium phosphide by atmospheric pressure metal±organic che...
The growth of high-quality stoichiometric indium phosphide by atmospheric pressure metal±organic che...
We describe the use of novel MOCVD methods designed to infill templated structures based upon synthe...
We describe the use of novel MOCVD methods designed to infill templated structures based upon synth...
We describe the use of novel MOCVD methods designed to infill templated structures based upon synth...
Opals consist of an ordered array of SiO2 spheres. This leads to a modulation of the refractive inde...
Opals consist of an ordered array of SiO2 spheres. This leads to a modulation of the refractive inde...
Opals consist of an ordered array of SiO2 spheres. This leads to a modulation of the refractive inde...
Opals consist of an ordered array of SiO2 spheres. This leads to a modulation of the refractive inde...
Metal Organic Chemical Vapour Deposition (MOCVD) is being used successfully in production and resear...
Metal Organic Chemical Vapour Deposition (MOCVD) is being used successfully in production and resear...
In the late eighties, a new class of materials, known as photonic crystals (PCs), emerged enabling t...
The past decade and a half has seen the rapid emergence of a new material class known as photonic cr...
The metalorganic chemical vapor deposition (MOCVD) of II-VI semiconducting compounds (II-IVs) has be...
The growth of high-quality stoichiometric indium phosphide by atmospheric pressure metal±organic che...
The growth of high-quality stoichiometric indium phosphide by atmospheric pressure metal±organic che...
The growth of high-quality stoichiometric indium phosphide by atmospheric pressure metal±organic che...