We numerically calculate the equivalent mode-field radius of the fundamental mode in a photonic crystal fiber (PCF) and show that this is a function of the V-parameter only and not the relative hole size. This dependency is similar to what is found for graded-index standard fibers and we furthermore show that the relation for the PCF can be excellently approximated with the same general mathematical expression. This is to our knowledge the first semi-analytical description of the mode-field radius of a PCF
Using a finite-element mode solver, the modes of a commercial endlessly single-mode photonic crystal...
Abstract. Photonic crystal fibers (PCFs) constitute a new class of optical sensors because of its di...
In this article, perfectly matched layer (PML) for the boundary treatment and an efficient compact t...
We consider photonic crystal fibers made from arbitrary base materials and derive a unified semi-ana...
We have investigated the validity of the V parameter to identify the single-mode operation regime fo...
A new empirical relation is formulated for effective cladding index of solid-core photonic crystal f...
We present a simple but highly accurate modeling technique for real photonic crystal fibers (PCFs) c...
In this study, full wave solutions are presented for a specific photonic crystal fiber (PCF) structu...
We report on our experimental characterization of index-guiding photonic crystal fibers (PCF) from t...
Understanding bend loss in single-ring hollow-core photonic crystal fibers (PCFs) is becoming of inc...
Photonic crystal fibre (PCF) is a unique form of low-loss optical waveguide, which works by trapping...
A finite-element-based vectorial optical mode solver, furnished with Bayliss-Gunzburger-Turkel-like ...
In this paper we have studied solid-core square-lattice PCFs with circular and square shaped air-hol...
Using a finite-element mode solver, the modes of a commercial endlessly single-mode photonic crystal...
Abstract. A finite-element-based vectorial optical mode solver, furnished with Bayliss-Gunzburger-Tu...
Using a finite-element mode solver, the modes of a commercial endlessly single-mode photonic crystal...
Abstract. Photonic crystal fibers (PCFs) constitute a new class of optical sensors because of its di...
In this article, perfectly matched layer (PML) for the boundary treatment and an efficient compact t...
We consider photonic crystal fibers made from arbitrary base materials and derive a unified semi-ana...
We have investigated the validity of the V parameter to identify the single-mode operation regime fo...
A new empirical relation is formulated for effective cladding index of solid-core photonic crystal f...
We present a simple but highly accurate modeling technique for real photonic crystal fibers (PCFs) c...
In this study, full wave solutions are presented for a specific photonic crystal fiber (PCF) structu...
We report on our experimental characterization of index-guiding photonic crystal fibers (PCF) from t...
Understanding bend loss in single-ring hollow-core photonic crystal fibers (PCFs) is becoming of inc...
Photonic crystal fibre (PCF) is a unique form of low-loss optical waveguide, which works by trapping...
A finite-element-based vectorial optical mode solver, furnished with Bayliss-Gunzburger-Turkel-like ...
In this paper we have studied solid-core square-lattice PCFs with circular and square shaped air-hol...
Using a finite-element mode solver, the modes of a commercial endlessly single-mode photonic crystal...
Abstract. A finite-element-based vectorial optical mode solver, furnished with Bayliss-Gunzburger-Tu...
Using a finite-element mode solver, the modes of a commercial endlessly single-mode photonic crystal...
Abstract. Photonic crystal fibers (PCFs) constitute a new class of optical sensors because of its di...
In this article, perfectly matched layer (PML) for the boundary treatment and an efficient compact t...