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Low Loss and Temperature Stable Microstructured Polymer Optical Fibers
Journal of Lightwave Technology, 2012We report on a study of the loss mechanisms in microstructured polymer optical fibers (mPOF), resulting in the fabrication of mPOF with a loss equal to that of commercial polymer optical fibers of 0.16 dB/m at 650 nm, nearing the limit imposed by material absorption.
Alexander Argyros +5 more
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Coupling in a twin-core microstructured polymer optical fiber
Applied Physics Letters, 2004Theoretical calculations and experimental results are reported for a microstructured polymer optical fiber twin-core coupler. Beat lengths are calculated using a fully vectorial, Fourier decomposition method, which show that the beat length is extremely sensitive to any core asymmetry. Reasonably good agreement between theory and experiment is obtained.
W. E. P. Padden +3 more
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Microstructured polymer optical fiber-based surface plasmon resonance sensor
SPIE Proceedings, 2012ABSTRACT We propose a surface plasmon resonance sensor based on microstructured polymer optical fiber (mPOF) made of polymethyl methacrylate (PMMA) with the cladding having only one layer of air holes near the edge of the fiber. In such sensor, the nanoscale silver metal film can be deposited on the outer side of the fiber, which is easily realized ...
Ying Lu +5 more
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Tunable Single-Polarization Single-Mode Microstructured Polymer Optical Fiber
Journal of Lightwave Technology, 2011A new procedure to obtain single-polarization single-mode polymeric optical fibers is reported. The selective polarization confinement loss mechanism is obtained by applying external hydrostatic pressure in a specially designed side-hole microstructured polymer optical fiber.
Yovanny A. V. Espinel +2 more
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Microstructured Multicore Polymer Optical Fiber Temperature-insensitive Stress Sensor
Optik, 2019Abstract We describe a novel microstructured multicore polymer optical fiber (m-MPOF) made of PMMA with air-holes running along the entire length of the fiber. In polymer, refractive index decreases with increasing temperature, a negative thermo-optic coefficient which results in the increase of coupling with increasing temperature thus reducing the ...
Sreenesh Shashidharan +2 more
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Microstructured Polymer Optical Fiber Gratings and Sensors
2017Getinet Woyessa +2 more
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Microstructured and Solid Polymer Optical Fiber Sensors
2017Christian-Alexander Bunge, Hans Poisel
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Localized biosensing with Topas microstructured polymer optical fiber
Optics Letters, 2007Ole Bang
exaly

