International audienceWe report a simple process for the batch fabrication of photonic crystals in lithium niobate substrates. By means of proton-exchange (PE) followed by CHF3 reactive ion etching (RIE) we have achieved structures with a diameter of 400 nm and an aspect ratio (depth-to-diameter) of 3:1. Sub-micrometric structures have been fabricated with an 85 degrees angle between the walls and the plane of the substrate. We provide the optimized parameters - and their influence on the aspect ratio, the etching rate and the verticality of the walls. Transversal cross-section micrographs of the etched patterns, for both X-cut and Z-cut substrates, are shown as a clear evidence of the capability developed. (C) 2008 Elsevier B.V. All rights...
International audienceReactive Ion Etching (RIE) has been used to etch micron-sized holes which are ...
Lithium niobate is a nonlinear optical ferroelectric crystal which has found extended use in the are...
International audienceWe present LiNbO3 nanostructures with ultra-smoothed walls realized by FIB or ...
International audienceWe report on two approaches to achieve ultra-smooth structures on lithium niob...
International audienceWe report on two novel ways for patterning Lithium Niobate (LN) at submicronic...
In this bachelor’s thesis, a fabrication process for channel waveguides in LiNbO 3crystals using the...
Annealing of micro-structured lithium niobate substrates at temperatures close to, but below the mel...
This thesis presents the results from an investigation into methods for micron-scale relief structur...
Lithium niobate is treated with argon ion beam irradiation of varying energy, resulting in a homogen...
This thesis presents the results from investigations directed at novel approaches to domain engineer...
Lithium niobate (LN) is a widely used artificial optic-electronic crystal. A LN surface is an attrac...
We report the successful fabrication of 6 μm thick slices from a ferroelectric domain microengineere...
International audienceThe development of all-optical, acousto-optical or electro-optical photonic cr...
Abstract. Recent progress of wet etching of Z-cut LN, of inductively coupled plasma (ICP-) etching o...
We report a modification in the etching characteristics of lithium niobate (LiNbO3) single crystals ...
International audienceReactive Ion Etching (RIE) has been used to etch micron-sized holes which are ...
Lithium niobate is a nonlinear optical ferroelectric crystal which has found extended use in the are...
International audienceWe present LiNbO3 nanostructures with ultra-smoothed walls realized by FIB or ...
International audienceWe report on two approaches to achieve ultra-smooth structures on lithium niob...
International audienceWe report on two novel ways for patterning Lithium Niobate (LN) at submicronic...
In this bachelor’s thesis, a fabrication process for channel waveguides in LiNbO 3crystals using the...
Annealing of micro-structured lithium niobate substrates at temperatures close to, but below the mel...
This thesis presents the results from an investigation into methods for micron-scale relief structur...
Lithium niobate is treated with argon ion beam irradiation of varying energy, resulting in a homogen...
This thesis presents the results from investigations directed at novel approaches to domain engineer...
Lithium niobate (LN) is a widely used artificial optic-electronic crystal. A LN surface is an attrac...
We report the successful fabrication of 6 μm thick slices from a ferroelectric domain microengineere...
International audienceThe development of all-optical, acousto-optical or electro-optical photonic cr...
Abstract. Recent progress of wet etching of Z-cut LN, of inductively coupled plasma (ICP-) etching o...
We report a modification in the etching characteristics of lithium niobate (LiNbO3) single crystals ...
International audienceReactive Ion Etching (RIE) has been used to etch micron-sized holes which are ...
Lithium niobate is a nonlinear optical ferroelectric crystal which has found extended use in the are...
International audienceWe present LiNbO3 nanostructures with ultra-smoothed walls realized by FIB or ...