Title :
Re-growth free single mode lasers based on slots suitable for photonic integration
Author :
Qiaoyin Lu ; Weihua Guo ; Abdullaev, A. ; Nawrocka, M. ; O´Callaghan, James ; Lynch, M. ; Weldon, V. ; Donegan, J.F.
Author_Institution :
Sch. of Phys., Trinity Coll. Dublin, Dublin, Ireland
Abstract :
The single mode laser structure based on etched slots suitable for photonic integration is presented in this paper. The laser is made completely dependent on a group of slots on one side of the laser cavity. The fabricated 750 μm long single section laser exhibits a threshold current and a slope efficiency of about 32 mA and 0.11 mW/mA, respectively. The stable single mode operation has been observed with a side mode suppression ratio (SMSR) of around 47 dB at a current injection of 100 mA for the fabricated laser. To solve the yield problem associated with the cleaving of the laser structure, the two-section single mode laser based on slots was further present. By tuning the back section current, stable single mode performance with a SMSR of more than 42 dB is observed over a wide temperature from 15°C to 65°C for the fabricated 750 μm long two-section laser. The presented laser structure just needs a single wafer growth and can be fabricated by standard photolithography and has very strong potential for use in optical communication systems.
Keywords :
laser cavity resonators; laser modes; photolithography; quantum well lasers; current 100 mA; distance 750 mum; etched slots; laser cavity; laser structure; photolithography; photonic integration; re-growth free single mode lasers; side mode suppression ratio; single section laser; single wafer growth; temperature 15 degC to 65 degC; Laser feedback; Laser modes; Laser tuning; Measurement by laser beam; Optical waveguides; Waveguide lasers; Semiconductor lasers; side mode suppression ratio; single mode lasers; surface grating; two-section;
Conference_Titel :
Transparent Optical Networks (ICTON), 2012 14th International Conference on
Conference_Location :
Coventry
Print_ISBN :
978-1-4673-2228-7
Electronic_ISBN :
2161-2056
DOI :
10.1109/ICTON.2012.6254431