參考文獻 |
[1] S. Nakamura, T. Mukai, and M. Senoh, “Candela‐class high‐brightness InGaN/AlGaN double‐heterostructure blue‐light‐emitting diodes,” Appl. Phys. Lett. 64, 1687 (1994).
[2] R. Haitz and J. Y. Tsao, “Solid-state lighting: ‘The case’ 10 years after and future prospects,” Phys. Status Solidi A 208, 17–29 (2011).
[3] E. F. Schubert, Light-Emitting Diodes (Cambridge University Press,2006).
[4] Y. Shimizu, K. Sakano, Y. Noguchi, and T. Moriguchi, “Light emitting device having a nitride compound semiconductor and a phosphor containing a garnet fluorescent material,” United States Patent, US 5998925 (1999).
[5] A. A. Setlur, A. M. Srivastava, H. A. Comanzo, and D. D. Doxsee, “Phosphor blends for generating white light from near-UV/blue light-emitting devices,” United States Patent, US 6685852 B2 (2004).
[6] H. Wu, X. Zhang, C. Guo, J. Xu, M. Wu, and Q. Su, “Three-band white light from InGaN-based blue LED chip precoated with Green/red phosphors,” IEEE Photon. Technol. Lett. 17, 1160-1162 (2005).
[7] Y. C. Shen, G. O. Mueller, S. Watanabe, N. F. Gardner, A. Munkholm, and M. R. Krames, “Auger recombination in InGaN measured by photoluminescence,” Appl. Phys. Lett. 91, 141101 (2007).
[8] LEDinside, http://www.ledinside.com.tw/node/9288/.
[9] Cree,http://www.cree.com/News-and-Events/Cree-News/Press-Releases/2014/March/ 300LPW-LED-barrier.
[10] N. Kimura, K. Sakuma, S. Hirafune, K. Asano, and N. Hirosaki, “Extrahigh color rendering white light-emitting diode lamps using oxynitride and nitride phosphors excited by blue light-emitting diode,” Appl. Phys. Lett. 90, 051109 (2007).
[11] M. R. Krames, O. B. Shchekin, R. Mueller-Mach, G. O. Mueller, L. Zhou, G. Harbers, and M. G. Craford, “Status and Future of High-Power Light-Emitting Diodes for Solid-State Lighting,” J. Display Technol. 3, 160-175 (2007).
[12] M. H. Crawford, “LEDs for Solid-State Lighting: Performance Challenges and Recent Advances,” in IEEE J. Sel. Top. in Quantum 15, 1028-1040 (2009).
[13] J. Piprek, “Efficiency droop in nitride-based light-emitting diodes,” Phys. Status Solidi A 207, 2217–2225 (2010).
[14] J. Cho, E. F. Schubert, and J. K. Kim, “Efficiency droop in light-emitting diodes: Challenges and countermeasures,” Laser Photon. Rev. 6, 408–421 (2013).
[15] T. Mukai, S. Nagahama, T. Kozaki, M. Sano, D. Morita, T. Yanamoto, M. Yamamoto, K. Akashi, and S. Masui, “Current status and future prospects of GaN-based LEDs and LDs,” Phys. Status Solidi A 201, 2712–2716 (2004).
[16] J. J. Wierer, Jr., J. Y. Tsao, and D. S. Sizov, “Comparison between blue lasers and light-emitting diodes for future solid-state lighting,” Laser Photonics Rev. 7, 963–993 (2013).
[17] N. Holonyak and S. F. Bevacqua, “Coherent (visible) light emission from Ga(As1-xPx) junctions,” Appl. Phys. Lett. 1, 82–83(1962).
[18] H. Manchester, “Light of Hope or Terror?,” Readers Digest, 97–100 (1963).
[19] A. Neumann, J. J. Wierer, W. Davis, Y. Ohno, S. R. J. Brueck, and J.Y. Tsao, “Four-color laser white illuminant demonstrating high color-rendering quality,” Opt. Express 19, A982-A990 (2011)
[20] H. Y. Ryu and D. H. Kim, “High-brightness Phosphor-conversion White Light Source Using InGaN Blue Laser Diode,” J. Opt. Soc. Korea 14, 415-419 (2010).\r
[21] K. A. Denault, M. Cantore, S. Nakamura, S. P. DenBaars, and R. Seshadri, “Efficient and stable laser-driven white lighting,” AIP Advances 3, 072107 (2013).
[22] G. Ledru, C. Catalano, P. Dupuis, and G. Zissis, “Efficiency and stability of a phosphor-conversion white light source using a blue laser diode,” AIP ADVANCES 4, 107134 (2014)
[23] Y. Xu, L. Chen, Y. Li, G. Song and Y. Wang, “Phosphor-conversion white light using InGaN ultraviolet laser diode,” Appl. Phys. Lett. 92, 021129-021129-3 (2008).
[24] T. Farooq and K. Qian, “High luminance low étendue white light source using blue laser over static phosphor,” SPIE 9671, AOPC 2015: Advances in Laser Technology and Applications (2015).
[25] N. Abu-Ageel and D. Aslam, “Laser-Driven Visible Solid-State Light Source for Etendue -Limited Applications,” J. Display Technol. 10, 700-703 (2014).
[26] T. Reiners, “Headlight module,” United States Patent, US 9702519 B2 (2017).
[27] O. Svelto, Principle of Lasers 5th edition (Springer, New York, 1989).
[28] S. O. Kasap, Optoelectronic And Photonics – Principles and Practices (Prentice Hall, 2001).
[29] S. Shionoya, W. M. Yen, and T. Hase, Phosphor Handbook (CRC Press, BocaRaton, 1999).
[30] 劉如熹、劉宇桓,發光二極體用氧氮螢光粉介紹,全華圖書股份有限公司,台北市,中華民國九十五年。
[31] James M. Palmer and Barbara G. Grant, The Art of Radiometry (SPIE Press, Washington, 2010).
[32] International Commission on Illumination, CIE15: Technical Report: Colorimetry, 3rd ed. (CIE, Vienna, 2004).
[33] K. L. Kelly, “Lines of Constant Correlated Color Temperature Based on MacAdam’s (u,υ) Uniform Chromaticity Transformation of the CIE Diagram,” J. Opt. Soc. Am. 53, 999-1002 (1963)
[34] 何信穎,白光 LED 之 YAG 螢光粉光學模型之研究,國立中央大學光電科學研究所碩士論文,中華民國九十六年。
[35] 紀葦世,高效能YAG 螢光粉之特性量測與模型,元智大學光電工程研究所碩士論文,中華民國九十九年。
[36] 陳靜儀,矽酸鹽螢光粉用於白光 LED 之光學模型,國立中央大學光電科學研究所碩士論文,中華民國九十七年。
[37] 張容瑄,綠橘雙色矽酸鹽螢光粉光學模型之建立與分析,國立中央大學光電科學研究所碩士論文,中華民國九十九年。
[38] 張育譽,雙螢光粉光學模型之研究其演色性之評估,國立中央大學光電科學研究所博士論文,中華民國一百零四年。
[39] C. C. Sun, C. Y. Chen, H. Y. He, C. C. Chen, W. T. Chien, T. X. Lee, and T.H. Yang, “Precise optical modeling for silicate-based white LEDs,” Opt. Express 16, 20060-20066 (2008).
[40] C. C. Sun, C. Y. Chen, J. H. Chang, T. H. Yang, W. S. Ji, Y. S. Jeng, and H. M. Wu, “Linear calculation model for prediction of color rendering index performance associated with correlated color temperature of white light emitting diodes with two phosphors,” Opt. Eng. 51, 054003 (2012).
[41] T. H. Yang, C. Y. Chen, Y. Y. Chang, B. Glorieux, Y. N. Peng, H. X. Chen, T. Y. Chung, T. X. Lee, and C. C. Sun, “Precise simulation of spectrum for green emitting phosphors pumped by a blue LED die,” IEEE Photon. J. 6, 8400510 (2014).
[42] S. J. Lee, “Analysis of light-emitting diodes by Monte Carlo photon simulation,” Appl. Opt. 40, 1427-1437 (2001).
[43] Z. Y. Ting and C. McGill, “Monte Carlo simulation of light-emitting diode light-extraction characteristics,” Opt. Eng. 34, 3545-3553 (1995).
[44] Breault Research Organization, Inc., http://www.breault.com/.
[45] 弘大貿易股份有限公司, http://hung-ta-co.com/web2013/tw/index.aspx.
[46] N. T. Tran, J. P. You, and F. G. Shi, “Effect of phosphor particle size on luminous efficacy of phosphor-converted white LED,” J. Lightwave Techno. 27, 5145-5150 (2009).
[47] Y. Shuai, N. T. Tran, and F. G. Shi, “Nonmonotonic phosphor size dependence of luminous efficacy for typical white LED emitters,” IEEE Photon. Techno Lett. 23, 552-554 (2011).
[48] Nichia, Inc., http://www.nichia.co.jp/en/product/laser.html.
[49] K. Dowling and M. Grather, Approved method: Electrical and Photometric Measurements of Solid-State Lighting Product (Illuminating Engineering Society, New York, 2008).
[50] R. Hua, X. Luo, H. Fenga, and S. Liu, “Effect of phosphor settling on the optical performance of phosphor-converted white light-emitting diode,” J.Lumines. 132, 1252-1256 (2012).
[51] J. D. Ingle and S. R. Crouch, Spectrochemical Analysis (Prentice Hall, New Jersey, 1988).
[52] V. N. Mahajan, Fundamentals of Geometrical Optics (SPIE Press, Washington, 2014).
[53] Bayer, https://www.bayer.com/. |