Photonic crystals (PhC) are promising candidates for novel optical components. Passive devices realized with PhC, e.g. complex waveguides, are widely known. However for many applications active devices are requird. One possible way to realize such devices is the functionalization of 2D PhC. This can be done by combining 2D PhC with deyes. We present an experimental technique for the infiltration of individual pores which allows the realization of a broad spectrum of different device designs. For the infiltration of individual pores we use 2D PhC templates made of macroporous silicon, electron beam physical vapor deposition, focused ion beam technique, electrochemical deposition and the wetting assisted templating (WASTE)-process [1]-[3]
We present a method to create at the same time trenches and ordered macropore arrays during photo-el...
We demonstrate that the infiltration of individual pores of certain two-dimensional photonic crystal...
We study the optical properties of three-dimensional (3D) microstructures fabricated by electrochemi...
A new and promising approach for the design and fabrication of novel otpical devices is the function...
Photonic crystals (PhCs) promise to be useful in many optical elements. While the linear optical pro...
A review of the optical properties of two-dimensional and three-dimensional photonic crystals based ...
We have fabricated macroporous silicon and proved its applicability as a two-dimensional photonic ba...
P-type macroporous silicon for two-dimensional photonic crystals was discussed. Electrochemical etch...
A review of the optical properties of 2D and 3D photonic crystals based on macroporous silicon is gi...
This paper reports on the fabrication of two-dimensional macropore arrays by electrochemical etching...
Si-based 2D macroporous photonic crystals have become of increasing interest, because of their extra...
With the aid of techniques developed in the group. The student will develop MATLAB (or alternatuve) ...
We introduce the concept of silicon-based photonic crystals with the main focus on the macroporous s...
Abstract. Local tuning of the optical response of GaAs-based two dimensional photonic crystals (PhCs...
Silicon is the dominant material in semiconductor industry to date. Novel nanostructuring technologi...
We present a method to create at the same time trenches and ordered macropore arrays during photo-el...
We demonstrate that the infiltration of individual pores of certain two-dimensional photonic crystal...
We study the optical properties of three-dimensional (3D) microstructures fabricated by electrochemi...
A new and promising approach for the design and fabrication of novel otpical devices is the function...
Photonic crystals (PhCs) promise to be useful in many optical elements. While the linear optical pro...
A review of the optical properties of two-dimensional and three-dimensional photonic crystals based ...
We have fabricated macroporous silicon and proved its applicability as a two-dimensional photonic ba...
P-type macroporous silicon for two-dimensional photonic crystals was discussed. Electrochemical etch...
A review of the optical properties of 2D and 3D photonic crystals based on macroporous silicon is gi...
This paper reports on the fabrication of two-dimensional macropore arrays by electrochemical etching...
Si-based 2D macroporous photonic crystals have become of increasing interest, because of their extra...
With the aid of techniques developed in the group. The student will develop MATLAB (or alternatuve) ...
We introduce the concept of silicon-based photonic crystals with the main focus on the macroporous s...
Abstract. Local tuning of the optical response of GaAs-based two dimensional photonic crystals (PhCs...
Silicon is the dominant material in semiconductor industry to date. Novel nanostructuring technologi...
We present a method to create at the same time trenches and ordered macropore arrays during photo-el...
We demonstrate that the infiltration of individual pores of certain two-dimensional photonic crystal...
We study the optical properties of three-dimensional (3D) microstructures fabricated by electrochemi...