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International and Domestic Conference Papers
[1]Y. J. Chiang, and R. H. Hsiao, “ Numerical calculation of silicon based photonic crystal thin films by employing stepwise effective index method,” TACE Workshop on Consumer Electronics, Taichung, Nov. 2011.
[2] Y. J. Chiang, and Likarn Wang, “ Optimization of erbium-doped fiber laser,” Optics and Photonics Taiwan 2008, Taipei, Taiwan, Dec. 2008.
[3] Y. J. Chiang, and Likarn Wang, “Multiwavelength switchable erbium-doped fiber laser employing fiber Bragg gratings,” Optics and Photonics Taiwan 2006, Hsinchu, Taiwan, Dec. 2006.
[4] Y. S. Hsu, Likarn Wang, and Y. J. Chiang, “Temperature-compensated optical pressure sensor employing a single fiber Bragg grating,” Optics and Photonics Taiwan 2005, Tainan, Taiwan, Dec. 2005.
[5] S. M. Wang, Likarn Wang, and Y. J. Chiang, “A new structure for multipoint temperature-independent strain sensing system employing optical power detection scheme,” Optics and Photonics Taiwan 2005, Tainan, Taiwan, Dec. 2005.
[6] Y. J. Chiang, Likarn Wang, W. F. Liu, H. S. Chen, C. W. Hsu, and C. C. Yang, “Multiplexed temperature-independent fiber Bragg grating strain sensor using two Bragg gratings and optical power detection scheme,” Optics and Photonics Taiwan 2001, Kaohsiung, Taiwan, Dec. 2001.
[7] C. C. Yang, C. N. Lin, C. Y. Tang, Y. J. Chiang, Y. W. Kiang, K. J. Ma, C. C. Chou, N. H. Sun, C. A. Wei, W. F. Liu, I. M. Liu, L. W. Chung, and D. W. Huang, "Flexural Waves on Fiber and Fiber Bragg Gratings for WDM Switching and Gain Equalization of Erbium-Doped Fiber Amplifiers," Asia-Pacific Optical and Wireless Communications Conference and Exhibit, Beijing, China, November 2001.
[8] Y. J. Chiang, Likarn Wang, C. C. Yang and W. F. Liu, ”A temperature insensitive fiber Bragg grating strain sensor in an optical power detection scheme,” International Photonics Conference 2000, Hsinchu, Taiwan, Dec. 2000.
[9] Y. J. Chiang, Likarn Wang and C. C. Yang, “Optical fiber Bragg grating sensor module for temperature measurement up to 500 ℃,” International Photonics Conference 2000, Hsinchu, Taiwan, Dec. 2000.
[10] Y. J. Chiang and Likarn Wang, “A sensitive wavelength-shift detection scheme for fiber Bragg grating sensors,” International Photonics Conference 1998, Taipei, Taiwan, Dec. 1998.
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International Journal Papers (SCI)
[1] C. S. Hsiao, Likarn Wang, and Y. J. Chiang,” An Algorithm for Beam Propagation Method in Matrix Form,” IEEE Journal of Quantum Electronics, vol. 46, pp. 332-339 (2010) SCI Impact Factor: 2.306
[2] Y. J. Chiang, C. S. Hsiao, and Likarn Wang,” Optimization of Erbium-Doped Fiber MOPA Lasers,” Optics Communications, vol. 283, pp. 1055-1058 (2010) SCI Impact factor: 1.48
[3] Y. J. Chiang, Likarn Wang, and Wen-Fung Liu,” Wavelength Switchable L-Band Erbium-Doped Fiber Laser Employing C-band EDFA as Gain Medium,” Journalof Modern Optics, (2008). vol.55, 14, pp. 2319-2328 (2008) SCI Impact factor:1.189
[4] S. M. Wang, Y. J. Chiang and Likarn Wang,” A New Structure for Multipoint Temperature-Independent Strain Sensing System Employing Optical Power Detection Scheme,” Optical Fiber Technology. vol.14, pp.167-171 (2008) SCI Impact factor:1.226
[5] C. S Hsiao,Y. J. Chiang, Likarn Wang and Wen-Wei Lin,” A Semi-Analytic Method for Solving Rib-Type Waveguide Problems,”Journal of Modern Optics. Vol.55, 8,pp.1315-1329 (2008) SCI Impact factor:1.189
[6] H.S. Lu, Y.J. Chiang, Likarn Wang,” Photonic Crystal Based Optical Add/Drop Multiplexer Using Narrow-Band Reflection Filters,”Japanese Journal of Applied Physics,vol.46,pp.6898-6902 (2007) SCI Impact factor:1.222
[7] C.L. Chang, Likarn Wang and Y. J. Chiang, ”A Dual Pumped Double-Pass L-Band EDFA with High Gain and Low Noise,” Optics Communications,vol.267,pp.108-112 (2006). SCI Impact factor:1.48
[8] Y.S. Hsu, Likarn Wang , Wen-Fung Liu and Y.J. Chiang,” Temperature Compensation of Optical Fiber Bragg Grating Pressure Sensor,” IEEE Photonics Technology Letters,vol. 18,pp. 874-876,(2006). SCI Impact factor:2.353 within 15 %
[9] Y. J. Chiang and Likarn Wang,” Temperature-insensitive multipoint strain-sensing system based on fiber Bragg gratings and optical power detection scheme,” IEEE Sensors Journal, 6, pp.465-470 (2006). SCI Impact factor:1.117
[10] Y.J. Chiang, Likarn Wang, H.S. Chen, C.C. Yang and W. F. Liu, “ Multipoint temperature independent fiber Bragg grating strain sensing system employing power detection scheme,” Applied Optics vol. 41, pp. 1661-1667,(2002). SCI Impact factor:1.717
[11] Y. J. Chiang, Likarn Wang, and et al,” Temperature insensitive linear strain measurement using two fiber Bragg gratings in a power detection scheme,” Optics Communications, pp. 327-330(2001). SCI Impact factor: 1.48
[12] C. C. Yang, C. N. Lin, C. Y. Tang, Y. J. Chiang, Y. W. Kiang, C. C. Chou, N. H. Sun, C. A. Wei, W. F. Liu, I. M. Liu, L. W. Chung, and D. W. Huang, "Flexural Waves on Fiber and Fiber Bragg Gratings for WDM Switching and Gain Equalization of Erbium-Doped Fiber Amplifiers," in Proc. SPIE, vol. 4579, pp. 130-136 (2001).
Domestic Journal Papers
[1] Y. J. Chiang and R. H. Hsiao,” Analytic demonstration of the existence of TE mode solutions in one-dimensional optical waveguide by employing successive approximation algorithm,” Journal of Oriental Institute of Technology, vol. 31, in press, (2011)
[1] Y. J. Chiang,” Multiwavelength switchable erbium-doped fiber laser employing fiber Bragg gratings,” Journal of Oriental Institute of Technology, vol. 29, pp. 19-23, (2009)
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