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Advances in flexible wearable pressure/strain sensors for motion monitoring in orthopaedic sports medicine. [PDF]
Jin H +8 more
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Editorial for the Glassy Materials and Micro/Nano Devices Section. [PDF]
Righini GC.
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Speed of Light in Hollow-Core Photonic Bandgap Fiber Approaching That in Vacuum. [PDF]
Cao X, Luo M, Liu J, Ma J, Hao Y, Liu Y.
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Programmable liquid-core fibers: Reconfigurable local dispersion control for computationally optimized ultrafast supercontinuum generation. [PDF]
Hofmann J +4 more
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Metal-free plano-convex lens-based optical probes for high-sensitivity and chemically resistant refractive index sensing. [PDF]
Hirakawa K +6 more
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Microstructured Polymer Optical Fibers
Journal of Lightwave Technology, 2009The fabrication, materials, properties and applications of microstructured polymer optical fibers are reviewed. Microstructured polymer optical fibers formed the basis of extensive work on the physics of microstructured fibers, and an outline of the contribution to the wider field of microstructured fibers is also presented.
Alexander Argyros
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Fiber fuse effect in microstructured fibers
OFC 2003 Optical Fiber Communications Conference, 2003., 2003In this paper we report the first observation of the fuse effect in a microstructured fiber. The fiber was fabricated by drilling holes in a silica rod and subsequent drawing of a fiber with output diameter of 125 /spl mu/m. The threshold intensity of laser radiation and some features of catastrophic damage differ strongly from those for conventional ...
E.M. Dianov +5 more
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Extruded Microstructured Fiber Lasers
IEEE Photonics Technology Letters, 2012We present the first fiber laser fabricated from an extruded microstructured preform. This laser is also, to the best of our knowledge, the first microstructured tellurite glass fiber laser. The threshold and efficiency of the 980-nm pumped, 1.5-μm erbium-doped tellurite laser were measured to be 1.5 mW and 13%, respectively.
Oermann, M. +5 more
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Microstructured polymer fiber laser
Optics Letters, 2004A microstructured polymer optical fiber doped with Rhodamine 6G dye was fabricated and demonstrated as an optical amplifier and a fiber laser. As an amplifier, the fiber achieved a gain in excess of 30 dB. As a pulsed fiber laser, the fiber exhibited a threshold of 20 microJ, a slope efficiency of 18%, and a lifetime as high as 130,000 shots at 10 Hz ...
Alexander, Argyros +3 more
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