Fabrication, Characterization, and Sensing Applications of a High-Birefringence Suspended-Core Fiber
暂无分享,去创建一个
Zhengyong Liu | H. Tam | Chuang Wu | M. Tse
[1] W. Urbańczyk,et al. Nonlinear frequency conversion in a birefringent microstructured fiber tuned by externally applied hydrostatic pressure. , 2013, Optics letters.
[2] Hwa-Yaw Tam,et al. In-line microfluidic refractometer based on C-shaped fiber assisted photonic crystal fiber Sagnac interferometer. , 2013, Optics letters.
[3] W. Jin,et al. Suspended core photonic microcells for sensing and device applications. , 2013, Optics letters.
[4] Chao Lu,et al. A Highly Sensitive and Low-Cost Sagnac Loop Based Pressure Sensor , 2013, IEEE Sensors Journal.
[5] Hwa-Yaw Tam,et al. Ultrahigh birefringence index-guiding photonic crystal fiber and its application for pressure and temperature discrimination. , 2013, Optics letters.
[6] Orlando Frazão,et al. Large range linear torsion sensor based on a suspended-core fiber loop mirror , 2013 .
[7] M. Pang,et al. Birefringence responses of hybrid photonic crystal fiber to strain and temperature , 2012, Other Conferences.
[8] H Thienpont,et al. Sensing characteristics of the rocking filters in microstructured fibers optimized for hydrostatic pressure measurements. , 2012, Optics express.
[9] Hwa-Yaw Tam,et al. Intermodal coupling of supermodes in a twin-core photonic crystal fiber and its application as a pressure sensor. , 2012, Optics express.
[10] C. Rauh,et al. Numerical Solution and Experimental Validation of the Drawing Process of Six-Hole Optical Fibers Including the Effects of Inner Pressure and Surface Tension , 2012, Journal of Lightwave Technology.
[11] Kevin P. Chen,et al. Distributed high-temperature pressure sensing using air-hole microstructural fibers. , 2012, Optics letters.
[12] Hwa-Yaw Tam,et al. Salinity sensor based on polyimide-coated photonic crystal fiber. , 2011, Optics express.
[13] Peng Zu,et al. A Temperature-Insensitive Twist Sensor by Using Low-Birefringence Photonic-Crystal-Fiber-Based Sagnac Interferometer , 2011, IEEE Photonics Technology Letters.
[14] Jens Kobelke,et al. Suspended-core fiber Bragg grating sensor for directional-dependent transverse stress monitoring. , 2011, Optics letters.
[15] Hwa-Yaw Tam,et al. Side-Hole Photonic Crystal Fiber With Ultrahigh Polarimetric Pressure Sensitivity , 2011, Journal of Lightwave Technology.
[16] Tanya M. Monro,et al. Sensing in suspended-core optical fibers , 2011, IEEE Winter Topicals 2011.
[17] H. Tam,et al. High-pressure and high-temperature characteristics of a Fabry-Perot interferometer based on photonic crystal fiber. , 2011, Optics letters.
[18] Hwa-Yaw Tam,et al. Polarization-maintaining photonic-crystal-fiber-based all-optical polarimetric torsion sensor , 2010 .
[19] Youngjoo Chung,et al. Temperature-Insensitive Torsion Sensor With Enhanced Sensitivity by Use of a Highly Birefringent Photonic Crystal Fiber , 2010, IEEE Photonics Technology Letters.
[20] Jens Kobelke,et al. Temperature- and strain-independent torsion sensor using a fiber loop mirror based on suspended twin-core fiber. , 2010, Optics letters.
[21] K. M. Chung,et al. Observation of symmetrical reflection sidebands in a silica suspended-core fiber Bragg grating. , 2010, Optics express.
[22] Hugo Thienpont,et al. Highly birefringent microstructured fibers with enhanced sensitivity to hydrostatic pressure. , 2010, Optics express.
[23] Chi Chiu Chan,et al. Strain Sensor Realized by Using Low-Birefringence Photonic-Crystal-Fiber-Based Sagnac Loop , 2010, IEEE Photonics Technology Letters.
[24] Hwa-Yaw Tam,et al. High pressure sensor based on photonic crystal fiber for downhole application , 2010 .
[25] Chuang Wu,et al. Characterization of Pressure Response of Bragg Gratings in Grapefruit Microstructured Fibers , 2010, Journal of Lightwave Technology.
[26] Takenobu Suzuki,et al. A suspended core nanofiber with unprecedented large diameter ratio of holey region to core. , 2010, Optics express.
[27] J.L. Santos,et al. Fiber-Optic Interferometric Torsion Sensor Based on a Two-LP-Mode Operation in Birefringent Fiber , 2009, IEEE Photonics Technology Letters.
[28] Stephen C Warren-Smith,et al. Suspended nanowires: fabrication, design and characterization of fibers with nanoscale cores. , 2009, Optics express.
[29] Young-Geun Han,et al. Temperature-insensitive strain measurement using a birefringent interferometer based on a polarization-maintaining photonic crystal fiber , 2009 .
[30] Jens Kobelke,et al. Strain and temperature characterisation of sensing head based on suspended-core fibre in Sagnac interferometer , 2008 .
[31] L. Fu,et al. Efficient supercontinuum generations in silica suspended core fibers. , 2008, Optics express.
[32] Jan Wojcik,et al. Sensing characteristics of rocking filter fabricated in microstructured birefringent fiber using fusion arc splicer. , 2008, Optics express.
[33] H. Tam,et al. Pressure sensor realized with polarization-maintaining photonic crystal fiber-based Sagnac interferometer. , 2008, Applied optics.
[34] Hwa-Yaw Tam,et al. Temperature-insensitive strain sensor with polarization-maintaining photonic crystal fiber based Sagnac interferometer , 2007 .
[35] D. Richardson,et al. Pulse compression at 1.06 μm in dispersion-decreasing holey fibers , 2006 .
[36] G. Barton,et al. Microstructured Polymer Optical Fibres: New Opportunities and Challenges , 2006 .
[37] Gang-Ding Peng,et al. Multiplexed fibre Fizeau interferometer and fibre Bragg grating sensor system for simultaneous measurement of quasi-static strain and temperature using discrete wavelet transform , 2006 .
[38] Hugo Thienpont,et al. Experimental and theoretical investigations of birefringent holey fibers with a triple defect. , 2005, Applied optics.
[39] John Canning,et al. Temperature independent highly birefringent photonic crystal fibre. , 2004, Optics express.
[40] Tadeusz Martynkien,et al. Effects of hydrostatic pressure on phase and group modal birefringence in microstructured holey fibers. , 2004, Applied optics.
[41] R. Buczyński. Photonic Crystal Fibers , 2004 .
[42] A. Yablon. Optical and mechanical effects of frozen-in stresses and strains in optical fibers , 2004, IEEE Journal of Selected Topics in Quantum Electronics.
[43] Yong-hee Lee,et al. High birefringence in elliptical hollow optical fiber. , 2004, Optics express.
[44] K. Sato,et al. Ultralow loss and long length photonic crystal fiber , 2004, Journal of Lightwave Technology.
[45] B. Eggleton,et al. Microstructured optical fiber devices. , 2001, Optics express.
[46] S. Kawanishi,et al. Optical properties of a low-loss polarization-maintaining photonic crystal fiber. , 2001, Optics express.
[47] T A Birks,et al. Group-velocity dispersion in photonic crystal fibers. , 1998, Optics letters.
[48] Michael A. Davis,et al. Fiber grating sensors , 1997 .
[49] P. Russell,et al. Endlessly single-mode photonic crystal fiber. , 1997, Optics letters.
[50] L. Reekie,et al. Optical in-fibre grating high pressure sensor , 1993 .
[51] T. Birks,et al. Shape of fiber tapers , 1992 .
[52] W. Bock,et al. Influence of high hydrostatic pressure on beat length in highly birefringent single-mode bow tie fibers. , 1990, Applied optics.
[53] J. Fleming,et al. Dispersion in GeO 2 –SiO 2 glasses , 1984 .
[54] D N Payne,et al. Birefringence and polarization mode-dispersion in spun single-mode fibers. , 1981, Applied Optics.
[55] William Primak,et al. Photoelastic Constants of Vitreous Silica and Its Elastic Coefficient of Refractive Index , 1959 .
[56] H. Tam,et al. SUPER-LATTICE STRUCTURE PHOTONIC CRYSTAL FIBER , 2010 .
[57] Bai-ou Guan,et al. Bragg Gratings in Pure-Silica Polarization-Maintaining Photonic Crystal Fiber , 2008, IEEE Photonics Technology Letters.
[58] D. Richardson,et al. Pulse compression at 1.06 microm in dispersion-decreasing holey fibers. , 2006, Optics letters.
[59] Jonathan C. Knight,et al. Photonic crystal fibres , 2003, Nature.