Personne

René Salathé

René Paul Salathé is Professor em. at EPFL since 2009. He is currently a technology consultant for several companies and he serves as an expert member of the Life Science team at the Swiss Innovation Agency (KTI/CTI) in Bern, on the scientific advisory board of the “Fraunhofer-Institut für Lasertechnik ILT“ in Aachen, and he participates on expert panels for the “Deutsche Forschungsgemeinschaft”. He is a member of the Swiss Society for Optics and Microscopy, the European Optical Society, the Optical Society of America, a senior member of the IEEE, and a life time member of the Swiss Physical Society.

René Paul Salathé received the MS, PhD, and Habilitation (Privatdozent) degrees at the University of Bern in 1970, 1974, and 1979, respectively. Prior to his appointment at EPFL in 1989, he was directing the division "Material Testing and Technology" at the research and development center of the Swiss PTT. He has been active in the fields of semiconductor lasers, fibers, integrated optics, laser processing, and biomedical optics. The results of his research activities have been published more than 250 scientific contributions and 37 PhD theses at EPFL. Several start-up companies have been founded based on patents elaborated in his laboratory and/or by his PhD students. His actual research interests are in the areas of laser tweezers in micro-fluidics for biochemical applications and in optical fiber sensor applications.

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Publications associées (119)

Veuillez noter qu'il ne s'agit pas d'une liste complète des publications de cette personne. Elle inclut uniquement les travaux sémantiquement pertinents. Pour une liste complète, veuillez consulter Infoscience.

X-ray imaging detector for radiological applications adapted to the context and requirements of low- and middle-income countries

Jean-Philippe Thiran, René Salathé, Klaus Benedikt Schönenberger, Jérôme Schmid, Mario Andres Chavarria Varon, Hubert Blanchard, Romain Sahli, Sébastien Emmanuel Blanc, Matthias Hüser

This paper describes the development of a novel medical x-ray imaging system adapted to the needs and constraints of low- and middle-income countries. The developed system is based on an indirect conversion chain: a scintillator plate produces visible ligh ...
2022

Crossed fiber optic Bessel beams for curvilinear optofluidic transport of dielectric particles

René Salathé, Fabrice Merenda, Kyunghwan Oh

Due to its unique non-diffracting and self-reconstructing nature, Bessel beams have been successfully adopted to trap multiple particles along the beam's axial direction. However, prior bulk-optic based Bessel beams have a fundamental form-factor limitatio ...
Optical Soc Amer2013

Individual particle handling in a microfluidic system based on parallel laser trapping

René Salathé, Horst Vogel, Peter Ryser, Michael Werner, Bastien Rachet, Mathieu Grossenbacher

We present an optical trapping system combining individually addressable multiple laser traps with fluorescence spectroscopy. An in-line set of 64 near-IR laser diodes is used to create a line of individually addressable traps inside a microfluidic chip. T ...
Optical Society of America2011
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