Characteristics of triangle and square InP/InGaAsP microlasers


Autoria(s): Huang YZ; Wang SJ; Che KJ; Hu YH; Du Y; Yu LJ
Data(s)

2008

Resumo

Directional emission triangle and square InGaAsP/InP lasers have been fabricated by standard photolithography, inductively coupled plasma etching technique combined with wet chemical etching process. In this article, the characteristics of the microcavity lasers are presented. For an equilateral triangle microcavity laser with the side length of 30 mu m, we got the laser spectra fitted very well with the mode wavelength formulate LIP to the 8(th) transverse mode at room temperature. But the laser spectra are usually more complex than the formulae for the lasers, especially for the lasers with a smaller side length. For a square microcavity laser with side length of 20 mu m, we observed the mode competition between the Fabry-Perot (FP) modes and Whispering-Gallery (WG) modes at 200K. The output spectra below the threshold have the mode interval of FP modes with a large mode interval, and the laser spectra agree very well with the WG modes, which have mode interval less than the FP modes. The output spectra are dominated by the FP modes below the threshold, because the FP modes have a higher output coupling efficiency than the WG modes.

Directional emission triangle and square InGaAsP/InP lasers have been fabricated by standard photolithography, inductively coupled plasma etching technique combined with wet chemical etching process. In this article, the characteristics of the microcavity lasers are presented. For an equilateral triangle microcavity laser with the side length of 30 mu m, we got the laser spectra fitted very well with the mode wavelength formulate LIP to the 8(th) transverse mode at room temperature. But the laser spectra are usually more complex than the formulae for the lasers, especially for the lasers with a smaller side length. For a square microcavity laser with side length of 20 mu m, we observed the mode competition between the Fabry-Perot (FP) modes and Whispering-Gallery (WG) modes at 200K. The output spectra below the threshold have the mode interval of FP modes with a large mode interval, and the laser spectra agree very well with the WG modes, which have mode interval less than the FP modes. The output spectra are dominated by the FP modes below the threshold, because the FP modes have a higher output coupling efficiency than the WG modes.

zhangdi于2010-03-09批量导入

zhangdi于2010-03-09批量导入

Natl Inst Telecommun.; Athens Informat Technol.; grnet.; INTRACOM TELECOM.; COST Action 291.; IEEE/LEOS.

[Huang, Yong-Zhen; Wang, Shi-Jiang; Che, Kai-Jun; Hu, Yong-Hong; Du, Yun; Yu, Li-Jun] Chinese Acad Sci, Inst Semicond, State Key Lab Integrated Optoelect, Beijing 100083, Peoples R China

Natl Inst Telecommun.; Athens Informat Technol.; grnet.; INTRACOM TELECOM.; COST Action 291.; IEEE/LEOS.

Identificador

http://ir.semi.ac.cn/handle/172111/7760

http://www.irgrid.ac.cn/handle/1471x/65655

Idioma(s)

英语

Publicador

IEEE

345 E 47TH ST, NEW YORK, NY 10017 USA

Fonte

Huang, YZ ; Wang, SJ ; Che, KJ ; Hu, YH ; Du, Y ; Yu, LJ .Characteristics of triangle and square InP/InGaAsP microlasers .见:IEEE .ICTON 2008: PROCEEDINGS OF 2008 10TH ANNIVERSARY INTERNATIONAL CONFERENCE ON TRANSPARENT OPTICAL NETWORKS,345 E 47TH ST, NEW YORK, NY 10017 USA ,2008,VOL 4: 238-241

Palavras-Chave #光电子学 #semiconductor lasers
Tipo

会议论文