Attenzione: i dati modificati non sono ancora stati salvati. Per confermare inserimenti o cancellazioni di voci è necessario confermare con il tasto SALVA/INSERISCI in fondo alla pagina
IRIS
In this paper, we present the results of extensive single-radius bend loss measurements for two different fibers over wide ranges of wavelength (800-1600 nm) and curvature radius (13.5-27.5 mm). A new bend loss formula is also derived, allowing a good fit of experimental data over the whole range of both parameters. Using an equivalent step-index (ESI) approach we obtain a good agreement between estimated and real parameters: e.g., cutoff wavelengths are within 1%
In this paper, we present the results of extensive single-radius bend loss measurements for two different fibers over wide ranges of wavelength (800-1600 nm) and curvature radius (13.5-27.5 mm). A new bend loss formula is also derived, allowing a good fit of experimental data over the whole range of both parameters. Using an equivalent step-index (ESI) approach we obtain a good agreement between estimated and real parameters: e.g., cutoff wavelengths are within 1%
The Electrical and Electronics Engineering category covers resources concerned with applications of electricity, generally those involving current flow through conductors, as in motors and generators. This category also covers the examination of the conduction of electricity through gases or a vacuum as well as through semiconducting materials. Topics include image and signal processing, electromagnetics, electronic components and materials, microwave technology, and microelectronics.
INSPEC Accession Number:5561379
Citing Documents
1- Investigation of polarization-dependent loss for a macrobending loss sensitive single-mode fiber, P Wang, G Farrell, Y Semenova, G Rajan - Microwave and Optical Technology Letters, 2009 - interscience.wiley.com
2- A novel approach to the sensing of liquid density using a plastic optical fibre cantilever beam, A Kulkarni, Y Kim, T Kim - Physics Education, 2009 - iop.org
3- Low bend loss in tightly-bent fibers through adiabatic bend transitions, L Yao, TA Birks, JC Knight - Optics Express, 2009 - opticsinfobase.org
4- Influence of fiber manufacturing tolerances on the spectral response of a bend loss based all-fiber …, P Wang, G Farrell, Y Semenova, G Rajan - Applied Optics, 2008 - OSA
5- Field deformation and loss by curvature in gain guided and index anti-guided fibers, W Xiangru, X Caidong, X Wen - Optics Communications, 2008 - Elsevier
6- Optical Fiber Sensors Embedded Into Medical Textiles for Healthcare Monitoring, A Grillet, D Kinet, J Witt, M Schukar, K Krebber, … - IEEE Sensors Journal, 2008 - ieeexplore.ieee.org
7- Design and tolerance analysis of a low bending loss hole-assisted fiber using statistical design …, J Van Erps, C Debaes, T Nasilowski, J Watté, J … - Optics Express, 2008 - opticsinfobase.org
8- Observation of tunable bandpass characteristics in a hollow-optical-fiber-microstructured-fiber …, Y Jung, S Lee, BH Lee, J Kobelke, K Oh - Optics Letters, 2008 - OSA
9- Evanescent-wave in perturbed optical fibers, F El-Diasty, A Amichi - Optics Communications, 2008 - Elsevier
10- Power attenuation coefficient and intermodal beat length in perturbed optical fibers: the role of …, F El-Diasty, EA El-Dahshan - Journal of Optics A: Pure and Applied Optics, 2008 - iop.org
11- Temperature dependence of a macrobending edge filter based on a high-bend loss fiber, P Wang, G Rajan, Y Semenova, G Farrell - Optics Letters, 2008 - OSA
12- High-Order Finite-Element Methods for the Computation of Bending Loss in Optical Waveguides, R Jedidi, R Pierre - Journal of Lightwave Technology, 2007 - OSA
13- Polarization dependence of bend loss for a standard singlemode fiber, Q Wang, G Rajan, P Wang, G Farrell - Optics Express, 2007 - opticsinfobase.org
14- An optimized macrobending-fiber-based edge filter, P Wang, G Farrell, Q Wang, G Rajan - IEEE Photonics Technology Letters, 2007 - ieeexplore.ieee.org
15- Experimental investigations of bending loss oscillations in large mode area photonic crystal fibers, T Martynkien, J Olszewski, M Szpulak, G Golojuch, … - Optics Express, 2007 - opticsinfobase.org
16- Analytical evaluation of bending loss oscillations in photonic crystal fibers, J Olszewski, M Szpulak, T Martynkien, W Urbańczyk, … - Optics Communications, 2007 - Elsevier
17- Bend loss, tapering, and cladding-mode coupling in single-mode fibers, JD Love, C Durniak - IEEE Photonics Technology Letters, 2007 - ieeexplore.ieee.org
18- Bending loss in optical fibers—a full-wave approach, RW Smink, BP de Hon, AG Tijhuis - Journal of the Optical Society of America B, 2007 - OSA
19- Macrobending fibre loss filter, ratiometric wavelength measurement and application, Q Wang, G Rajan, G Farrell, P Wang, Y Semenova, T … - Measurement Science and Technology, 2007 - iop.org
20- Investigation of macrobending losses of standard single mode fiber with small bend radii, P Wang, Q Wang, G Farrell, G Rajan, T Freir, J … - Microwave and Optical Technology Letters, 2007 - interscience.wiley.com
21-FIBRE BRAGG SENSOR INTERROGATOR BASED MACROBENDING, C SMB, N RN, JL PINTO - ptee2007.tnw.tudelft.nl
22- 光纤弯曲损耗对信号传输的影响与分析
何宁,廖欣 - 桂林电子科技大学学报, 2007 - cqvip.com
光纤传输质量受光纤损耗的影响,分析与测试光纤的损耗对实际应用有参考价值。由于光纤弯曲
改变了传导模的形式,使光信号在弯曲部分产生了辐射损耗,信号传输距离和接收灵敏度将受到
不同程度的影响。系统对单模光纤弯曲损耗随弯曲半径(1-9 mm)进行90°和180°的弯曲
23- Low-cost wavelength measurement based on a macrobending single-mode fiber, Q Wang, G Farrell, T Freir, G Rajan, P Wang - Optics letters, 2006 - OSA
24- Method for the radial profiling of material dispersion of optical fibers due to mechanically induced …, F El-Diasty, FA Wahab - Optical Engineering, 2006 - link.aip.org
25- Chromatic and opto-mechanical dispersion of some characteristic parameters of optical fiber …, F El-Diasty, HA El-Hennawi, MA Soliman - Optics Communications, 2006 - Elsevier
26- Bend loss in silica optical fibre with low refractive index coating, DAP Bulla, JD Love - Optical Fibre Technology/Australian Optical Society, 2006. …, 2006 - ieeexplore.ieee.org
27- 基于贝塞尔函数数值求解平面光波导的弯曲损耗
王高刚,张逸新 - 激光与光电子学进展, 2006 - cqvip.com
第43卷,第5期2006年5月Vo1.43,No.5 May 2006 基于贝塞尔函数数值求解面光波导
的弯曲损耗王高刚张逸新f江南大学控制中心通信研究所,无锡214122 ...
28- Theoretical and experimental investigations of macro-bend losses for standard single mode fibers, Q Wang, G Farrell, T Freir - Optics Express, 2005 - opticsinfobase.org
29- Effect of coupling between fundamental and cladding modes on bending losses in photonic crystal …, J Olszewski, M Szpulak, W Urba? czyk - Optics Express, 2005 - opticsinfobase.org
30- High-temperature sensing using whispering gallery mode resonance in bent optical fibers, SH Nam, S Yin - IEEE Photonics Technology Letters, 2005 - ieeexplore.ieee.org
31- Bending loss measurement using a fiber cavity ringdown scheme, DE Vogler, A Lorencak, JM Rey, MW Sigrist - Optics and Lasers in Engineering, 2005 - Elsevier
32- Polarization effects in short-and long-period fibre gratings: A generalized approach, JL Arce-Diego, D Pereda-Cubian, MA Muriel - Journal of Optics A Pure and Applied Optics, 2004 - iop.org
33- Bandwidth analysis in the curved WDM waveguide coupler, Y Chen, WT Joines - Microwave and Optical Technology Letters, 2004 - interscience.wiley.com
34- Fizeau interferometry-based measurement of the photo-elastic coefficient and the cut-off wavelength …, F El-Diasty - Optics Communications, 2003 - Elsevier
35- 单模光纤中弯曲损耗的测试与分析
游善红,郝素君,殷宗敏,李新碗 - 光子学报, 2003 - cqvip.com
第32卷第4期2003年4月光子学报AC rA PHOTONICA SINICA V01.32
No.4 April 2003 单模光纤中弯曲损耗的测试与分析游善红郝素君殷
宗敏李新碗(上海交通大学光纤技术研究所,上海200030 ...
36- 单模光纤弯曲损耗的测量与分析
郝素君,游善红,李晓东,陈志勋 - 光纤与电缆及其应用技术, 2003 - cqvip.com
I 光纤与电缆及其应用技术Optical Fiber& Electric Cable 2003年第1期NO.1 2003,单模光纤弯曲损耗的测量与分析郝素君,游善红,李晓东,陈志勋(上海交通大学光纤技术研究所 ...
37- Characteristics of short-period blazed fiber Bragg gratings for use as macro-bending sensors, S Back, Y Jeong, B Lee - Applied optics, 2002 - OSA
38- Determination of bending-induced strain in optical fibers by use of quantitative phase imaging, A Roberts, K Thorn, ML Michna, N Dragomir, P … - Optics letters, 2002 - OSA
39- Simplified formula of bending loss for optical fiber sensors, SL Tsao, WM Cheng - Fiber and Integrated Optics, 2002-informaworld.com
40- Fiber bend losses produced by soft and swellable materials for hydrocarbon detection, G Beltran-Perez, EA Kuzin, J Camas-Anzueto, R … - Optics Communications, 2002 - Elsevier
41- Macrobend sensor via the use of a hollow-core splice fiber: theory and experiments, Y Jeong, S Baek, B Lee, S Choi, K Oh - Optical Engineering, 2002 - link.aip.org
42- Application of Fizeau fringes with bending technique to determine the shear modulus of the cladding …, F El-Diasty - Optics Communications, 2002 - Elsevier
43- Interferometric examination of the effect of bending on some single-mode fibre parameters, F El-Diasty - Journal of Optics A: Pure and Applied Optics, 2002 - iop.org
44- Reduction of bend loss through constraint of optical fiber parameters, JA DeMeritt, ZD Gaeta, PG Wigley - US Patent 6,477,297, 2002 - Google Patents
45- 谈数学教学中问题情境的创设
何还生 - 福建教学研究, 2002 - cqvip.com
在数学教学中,教师特别要注意防止学生用一种习惯r的固定思维模式去考虑问题,
尤其不要轻易地将方法和结论“施舍”给学生,而应当鼓励学生大胆地去探索 ...
46- Spectral modelling of curved long-period fibre gratings, DA Gonzalez, JL Arce-Diego, A Cobo, JM Lopez- … - Measurement Science and Technology, 2001 - iop.org
47- Analysis and test of the coupling mode in the bend single-mode fiber, S You, S Hao, Z Yin, X Fan - Proceedings of SPIE, 2001 - link.aip.org
48- Theory and measurement of Young's modulus radial profiles of bent single-mode optical fibers with …, F El-Diasty - Journal of the Optical Society of America A, 2001 - OSA
49- Effect of axial sinusoidal size variation on the modal characteristics of an annular optical fiber, V Singh, B Prasad, SP Ojha - Microwave and Optical Technology Letters, 2001 - interscience.wiley.com
50- Catastrophic damage and accelerated ageing in bent fibres caused by high optical powers, RM Percival, ESR Sikora, R Wyatt - Electronics letters, 2000 - ieeexplore.ieee.org
51- Propagation of light trapped within a set of lowest-order modes of graded-index multimode fiber …, CK Asawa, HF Taylor - Applied Optics, 2000 - OSA
52- R Bartnikas - Power and Communication Cables: Theory and Applications, 2000 - Wiley-IEEE Press
53- Bend-Induced Loss in Single-Mode Fibers, RW Smink, BP de Hon, AG Tijhuis - leosbenelux.org
54- Observation of tunable band-pass characteristics in a hollow optical fiber (HOF)-micro structured …, Y Jung, S Lee, BH Lee, J Kobelke, K Oh
55- BendBright SMF with improved macro-bending: supporting L-band usage while lowering installation cost …, P Matthijsse, G Kuyt - drakafibre.com
56- ВЛИЯНИЕ МЕХАНИЧЕСКИХ ВОЗДЕЙСТВИЙ НА РАСПРОСТРАНЕНИЕ ИЗЛУЧЕНИЯ В МАЛОМОДОВЫХ ВОЛОКОННЫХ СВЕТОВОДАХ, ДК Полюшкин, МЮ Вяткин - ПРОГНОЗИРОВАНИЕ СРОКОВ ДОЛГОВРЕМЕННОГО ХРАНЕНИЯ ВАКУУМНЫХ … - mipt.ru, Факультет физической и квантовой
электроники СЕКЦИЯ ФОТОНИКИ 52 УДК 681.7 ДК
Полюшкин 1, 2, МЮ Вяткин 2 1 Московский ...
...
bending; optical fibre testing; optical fibre theory; optical loss measurement; refractive index
I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.
Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/114071
Citazioni
ND
183
159
social impact
Conferma cancellazione
Sei sicuro che questo prodotto debba essere cancellato?
simulazione ASN
Il report seguente simula gli indicatori relativi alla propria produzione scientifica in relazione alle soglie ASN 2023-2025 del proprio SC/SSD. Si ricorda che il superamento dei valori soglia (almeno 2 su 3) è requisito necessario ma non sufficiente al conseguimento dell'abilitazione. La simulazione si basa sui dati IRIS e sugli indicatori bibliometrici alla data indicata e non tiene conto di eventuali periodi di congedo obbligatorio, che in sede di domanda ASN danno diritto a incrementi percentuali dei valori. La simulazione può differire dall'esito di un’eventuale domanda ASN sia per errori di catalogazione e/o dati mancanti in IRIS, sia per la variabilità dei dati bibliometrici nel tempo. Si consideri che Anvur calcola i valori degli indicatori all'ultima data utile per la presentazione delle domande.
La presente simulazione è stata realizzata sulla base delle specifiche raccolte sul tavolo ER del Focus Group IRIS coordinato dall’Università di Modena e Reggio Emilia e delle regole riportate nel DM 589/2018 e allegata Tabella A. Cineca, l’Università di Modena e Reggio Emilia e il Focus Group IRIS non si assumono alcuna responsabilità in merito all’uso che il diretto interessato o terzi faranno della simulazione. Si specifica inoltre che la simulazione contiene calcoli effettuati con dati e algoritmi di pubblico dominio e deve quindi essere considerata come un mero ausilio al calcolo svolgibile manualmente o con strumenti equivalenti.