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Intrinsic integrated optical temperature sensor based on waveguide bend loss
Authors:Mustapha Remouche  Rabah Mokdad  Ayoub Chakari  Patrick Meyrueis
Institution:aUniversité Louis Pasteur, Ecole Nationale Supérieure de Physique, Laboratoire des Systèmes Photoniques, Parc d’Innovation, Boulevard Sébastien Brant, B.P.10413, F-67400 Illkirch G, cedex, France;bUniversité Mouloud Mammeri, Laboratoire de Physique et Chimie Quantique (LPCQ), 15000 Tizi-ouzou, Algérie
Abstract:Curvature of a multimode integrated optical waveguide reduces the numerical aperture and induces radiation losses. In this paper, we study this phenomenon and we present a geometrical approach to calculate the local numerical aperture and the intensity attenuation. We exploit the bending effect on the local numerical aperture to make a new intrinsic temperature sensor. The simulation results are validated for the silica/silicone integrated optical case. The principal performances of the silica/silicone temperature sensor are the extended temperatures range (−50 to 200 °C) with an excellent linearity response (1%) between 20 and 200 °C.
Keywords:Optical waveguide  Sensor  Temperature
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