Journal of Engineering and Applied Sciences

Year: 2019
Volume: 14
Issue: 5 SI
Page No. 8970 - 8973

Study the Calibration of Bending Losses and Critical Radius of Curvature for Different Light Sources in Single-Mode Fibers

Authors : Wajeha AbdleDiam

References

Al Timimi, Z., M.S. Jaafar, M.Z.M. Jafri, H.A.A. Houssein, F.H. Mustafa and G.A. Al-Dahash, 2012. The influence of low power laser energy on red blood cell and platelets (in vitro). Proceedings of the International Conference on Bioscience, Biochemistry and Pharmaceutical Sciences, February 11-12, 2012, Penang, Malaysia, pp: 12-14.

Kashiwagi, M., K. Saitoh, K. Takenaga, S. Tanigawa, S. Matsuo and M. Fujimaki, 2012. Effectively single-mode all-solid photonic bandgap fiber with large effective area and low bending loss for compact high-power all-fiber lasers. Opt. Express, 20: 15061-15070.
CrossRef  |  PubMed  |  Direct Link  |  

Makouei, S., M.S. Oskouei and A. Rostami, 2007. Study of bending loss and mode field diameter in depressed inner core triple-clad single-mode optical fibers. Opt. Commun., 280: 58-67.
CrossRef  |  Direct Link  |  

Martins, A., A.M. Rocha, B. Neto, A.L.J. Teixeira and M. Facao et al., 2009. Modeling of bend losses in single-mode optical fibers. Proceedings of the 7th Conference on Telecommunications, May 3-5, 2009, Santa Maria da Feira, Portugal -.

Matsui, T., T. Sakamoto, K. Tsujikawa, S. Tomita and M. Tsubokawa, 2011. Single-mode photonic crystal fiber design with ultralarge effective area and low bending loss for ultrahigh-speed WDM transmission. J. Lightwave Technol., 29: 511-515.
CrossRef  |  Direct Link  |  

Nakajima, K., T. Matsui, S. Aozasa and T. Shimizu, 2011. Single-mode hole-assisted fiber with low bending loss characteristics. Proceedings of the IEEE Winter Topicals, January 10-12, 2011, Keystone, CO., USA., pp: 175-176.

Nakajima, K., T. Shimizu, T. Matsui, C. Fukai and T. Kurashima, 2010. Single-mode hole-assisted fiber as a bending-loss insensitive fiber. Opt. Fiber Technol., 16: 392-398.
CrossRef  |  Direct Link  |  

Saitoh, K., T. Murao, L. Rosa and M. Koshiba, 2010. Effective area limit of large-mode-area solid-core photonic bandgap fibers for fiber laser applications. Opt. Fiber Technol., 16: 409-418.
CrossRef  |  Direct Link  |  

Saitoh, K., Y. Tsuchida and M. Koshiba, 2009. Design of effectively single-mode leakage channel fibers with large mode area and low bending loss. IEICE. Electron. Express, 6: 412-417.
CrossRef  |  Direct Link  |  

Ulrich, R., S.C. Rashleigh and W. Eickhoff, 1980. Bending-induced birefringence in single-mode fibers. Opt. Lett., 5: 273-275.
CrossRef  |  Direct Link  |  

Watekar, P.R., S. Ju and W.T. Han, 2009. Design and development of a trenched optical fiber with ultra-low bending loss. Opt. Express, 17: 10350-10363.
CrossRef  |  PubMed  |  Direct Link  |  

Wu, Q., Y. Semenova, B. Yan, Y. Ma, P. Wang, C. Yu and G. Farrell, 2011. Fiber refractometer based on a fiber Bragg grating and single-mode-multimode-single-mode fiber structure. Opt. Lett., 36: 2197-2199.
CrossRef  |  PubMed  |  Direct Link  |  

Zahra'a, A.T., 2014. Exploration of additional mechanical phenomena of laser-tissue interaction contributes to the damage and elimination of the small blood vessels. Int. J. Scient. Eng. Res., 5: 672-675.
Direct Link  |  

Zendehnam, A., M. Mirzaei, A. Farashiani and L.H. Farahani, 2010. Investigation of bending loss in a single-mode optical fibre. Pramana, 74: 591-603.
CrossRef  |  Direct Link  |  

Zheng, S., G. Ren, Z. Lin, W. Jian and S. Jian, 2014. Design and analysis of novel multilayer-core fiber with large mode area and low bending loss. Opt. Commun., 315: 317-323.
CrossRef  |  Direct Link  |  

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