FBG Spectrum Regeneration by Ni-Coating and High-Temperature Treatment
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F. Felli | C. Lupi | C. Vendittozzi | E. Ciro
[1] Azhar Azhar,et al. Optimum Design Sapphire-Fiber Bragg Grating for High-Temperature Sensing , 2022, Jurnal Penelitian Pendidikan IPA.
[2] Okfalisa,et al. Integration of chirping and apodization of Topas materials for improving the performance of fiber Bragg grating sensors , 2021, Journal of Physics: Conference Series.
[3] Claudio Paris,et al. Railway overhead contact wire monitoring system by means of FBG sensors , 2021, Frattura ed Integrità Strutturale.
[4] C. Chiang,et al. Study of fiber Bragg gratings with TiN-coated for cryogenic temperature measurement , 2021 .
[5] J. Juraszek,et al. Fibre Optic FBG Sensors for Monitoring of the Temperature of the Building Envelope , 2021, Materials.
[6] Franz J. Dutz,et al. Regenerated Fibre Bragg Gratings: A critical assessment of more than 20 years of investigations , 2021 .
[7] M. Othman,et al. Fabrication and modification of temperature FBG sensor: role of optical fiber type and Cu sputtered thickness , 2020, Physica Scripta.
[8] P. Yupapin,et al. Temperature Sensing with Fibre Bragg Grating and No-Core Fibre , 2020, National Academy Science Letters.
[9] Linjun Li,et al. A Review of Coating Materials Used to Improve the Performance of Optical Fiber Sensors , 2020, Sensors.
[10] P. Korzhavyi,et al. First Principles Investigation on Thermodynamic Properties and Stacking Fault Energy of Paramagnetic Nickel at High Temperatures , 2020, Metals.
[11] Chi Chiu Chan,et al. Multifunctional Textile Platform for Fiber Optic Wearable Temperature-Monitoring Application , 2019, Micromachines.
[12] Mehdi Bagheri,et al. High-Resolution FBG-Based Fiber-Optic Sensor with Temperature Compensation for PD Monitoring , 2019, Sensors.
[13] Claudio Floridia,et al. Electroless Nickel-Plating Sealing in FBG Pressure Sensor for Thermoelectric Power Plant Engines Applications , 2019, Journal of Lightwave Technology.
[14] Wenjie Zhu,et al. A novel high temperature resistant Mo-Cu functional gradient coating for optic fiber Bragg grating , 2019, Results in Physics.
[15] Hypolito José Kalinowski,et al. Critical Issues of Double-Metal Layer Coating on FBG for Applications at High Temperatures , 2019, Sensors.
[16] K. Grattan,et al. Analysis of Fiber Optic Sensor Embedded in Metals by Automatic and Manual TIG Welding , 2019, IEEE Sensors Journal.
[17] R. Brian Jenkins,et al. High Temperature Effects during High Energy Laser Strikes on Embedded Fiber Bragg Grating Sensors , 2019, Sensors.
[18] Huanhuan Yan,et al. Fiber Bragg grating temperature sensor of cladding with SrTiO3 thin film by pulsed laser deposition , 2019, Laser Physics.
[19] Yulong Li,et al. Temperature sensing characteristics of metal coated FBG during dynamic cooling process , 2018, Optical Fiber Technology.
[20] M. Andrés,et al. Development and analysis of a model based on chirped fiber Bragg gratings employed for cracks characterization in materials , 2018, Optics Communications.
[21] Ferdinando Felli,et al. Modeling FBG sensors sensitivity from cryogenic temperatures to room temperature as a function of metal coating thickness , 2018 .
[22] A. Bard,et al. A Study of the Mechanism of the Hydrogen Evolution Reaction on Nickel by Surface Interrogation Scanning Electrochemical Microscopy. , 2017, Journal of the American Chemical Society.
[23] Yulong Li,et al. An Electroplating Method for Surface Mounting Optical Fiber Sensors on the Metal Substrate , 2016, IEEE Photonics Technology Letters.
[24] Hu Zhang,et al. A finite element model of thermal evolution in laser micro sintering , 2016 .
[25] John Canning,et al. Regeneration, regenerated gratings and composite glass properties: the implications for high temperature micro and nano milling and optical sensing , 2016 .
[26] S. Raghuwanshi,et al. Beam propagation and mode coupling study in a coupled waveguide structure by using scalar finite element method , 2016 .
[27] Long Jin,et al. Type IIa Bragg grating based ultra-short DBR fiber laser with high temperature resistance. , 2015, Optics letters.
[28] Fredrik Laurell,et al. Influence of pre-annealing on the thermal regeneration of fiber Bragg gratings in standard optical fibers. , 2015, Optics express.
[29] Mukul Chandra Paul,et al. Thermal regenerated grating operation at temperatures up to 1400°C using new class of multimaterial glass-based photosensitive fiber. , 2014, Optics letters.
[30] Yan Feng,et al. Effect of metalizing nickel on the spectrum of fiber Bragg grating , 2013 .
[31] Hua Xia,et al. Advanced fiber optical sensor and instrumentation for power generation industrial monitoring and diagnostics , 2012, Defense + Commercial Sensing.
[32] S. Lyuksyutov,et al. Peculiarities of thermo-optic coefficient under different temperature regimes in optical fibers containing fiber Bragg gratings , 2012 .
[33] J. Canning. Fibre gratings and devices for sensors and lasers , 2008 .
[34] M. D. Atrey,et al. Performance evaluation of metal-coated fiber Bragg grating sensors for sensing cryogenic temperature , 2008 .
[35] Michele Arturo Caponero,et al. Metal coating for enhancing the sensitivity of fibre Bragg grating sensors at cryogenic temperature , 2005 .
[36] J. Tamm,et al. Cathodic Hydrogen Evolution on Nickel in Acidic Environment , 2004 .
[37] John Canning,et al. Enhanced type IIA gratings for high-temperature operation. , 2004, Optics letters.
[38] Michael Fokine,et al. Thermal stability of chemical composition gratings in fluorine-germanium-doped silica fibers. , 2002, Optics letters.
[39] Gilberto Brambilla,et al. Fiber Bragg gratings with enhanced thermal stability , 2002 .
[40] R. K. Raja Ibrahim,et al. Temperature sensitivity of FBG coating with zinc oxide and silicon carbide , 2021 .
[41] Shaymaa R. Tahhan,et al. Impact of Apodization Profile on Performance of Fiber Bragg Grating Strain-Temperature Sensor , 2019, J. Commun..
[42] John Canning,et al. Thermal regenerated type IIa fiber Bragg gratings for ultra-high temperature operation , 2011 .