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Chin. Phys. B, 2009, Vol. 18(1): 225-230    DOI: 10.1088/1674-1056/18/1/037
CLASSICAL AREAS OF PHENOMENOLOGY Prev   Next  

Optical matching layer structures in evanescent coupling photodiodes at a wavelength of 1.55μm: physics, design and simulation

Zhang Yun(张云), Zuo Yu-Hua(左玉华), Guo Jian-Chuan(郭剑川), Ding Wu-Chang(丁武昌), Cheng Bu-Wen(成步文), Yu Jin-Zhong(余金中), and Wang Qi-Ming(王启明)
State Key Laboratory on Integrated Optoelectronics, Institute of Semiconductors, Chinese Academy of Sciences, Beijing 100083, China
Abstract  We have studied the optical matching layers (OMLs) and external quantum efficiency in the evanescent coupling photodiodes (ECPDs) integrating a diluted waveguide as a fibre-to-waveguide coupler, by using the semi-vectorial beam propagation method (BPM). The physical basis of OML has been identified, thereby a general designing rule of OML is developed in such a kind of photodiode. In addition, the external quantum efficiency and the polarization sensitivity versus the absorption and coupling length are analysed. With an optical matching layer, the absorption medium with a length of 30μm could absorb 90% of the incident light at 1.55μm wavelength, thus the total absorption increases more than 7 times over that of the photodiode without any optical matching layer.
Keywords:  optical matching      evanescent coupling      diluted waveguide      waveguide photodiode  
Received:  27 March 2008      Revised:  10 September 2008      Accepted manuscript online: 
PACS:  85.60.Dw (Photodiodes; phototransistors; photoresistors)  
  42.70.-a (Optical materials)  
  42.79.Wc (Optical coatings)  
  42.81.Bm (Fabrication, cladding, and splicing)  
Fund: Project supported by the National High Technology Research and Development Program of China (Grant No 2006CB302802).

Cite this article: 

Zhang Yun(张云), Zuo Yu-Hua(左玉华), Guo Jian-Chuan(郭剑川), Ding Wu-Chang(丁武昌), Cheng Bu-Wen(成步文), Yu Jin-Zhong(余金中), and Wang Qi-Ming(王启明) Optical matching layer structures in evanescent coupling photodiodes at a wavelength of 1.55μm: physics, design and simulation 2009 Chin. Phys. B 18 225

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