DocumentCode :
1299490
Title :
Integrated Tunable Quantum-Dot Laser for Optical Coherence Tomography in the 1.7 \\mu{\\rm m} Wavelength Region
Author :
Tilma, Bauke W. ; Jiao, Yuqing ; Kotani, Junji ; Smalbrugge, Barry ; Ambrosius, Huub P M M ; Thijs, Peter J. ; Leijtens, Xaveer J M ; Notzel, R. ; Smit, Meint K. ; Bente, Erwin A J M
Author_Institution :
COBRA Res. Inst., Eindhoven Univ. of Technol., Eindhoven, Netherlands
Volume :
48
Issue :
2
fYear :
2012
Firstpage :
87
Lastpage :
98
Abstract :
In this paper, we present the design and characterization of a monolithically integrated tunable laser for optical coherence tomography in medicine. This laser is the first monolithic photonic integrated circuit containing quantum-dot amplifiers, phase modulators, and passive components. We demonstrate electro-optical tuning capabilities over 60 nm between 1685 and 1745 nm, which is the largest tuning range demonstrated for an arrayed waveguide grating controlled tunable laser. Furthermore, it demonstrates that the active-passive integration technology designed for the 1550 nm telecom wavelength region can also be used in the 1600-1800 nm region. The tunable laser has a 0.11 nm effective linewidth and an approximately 0.1 mW output power. Scanning capabilities of the laser are demonstrated in a free space Michelson interferometer setup where the laser is scanned over the 60 nm in 4000 steps with a 500 Hz scan frequency. Switching between two wavelengths within this 60 nm range is demonstrated to be possible within 500 ns.
Keywords :
arrayed waveguide gratings; electro-optical modulation; integrated optics; laser tuning; optical tomography; phase modulation; quantum dot lasers; active-passive integration technology; arrayed waveguide grating; electro-optical tuning; integrated tunable quantum dot laser; monolithic photonic integrated circuit; monolithically integrated tunable laser; optical coherence tomography; passive component; phase modulator; quantum dot amplifier; telecom wavelength; wavelength 1550 nm; wavelength 1600 nm to 1800 nm; Laser tuning; Measurement by laser beam; Optical filters; Prognostics and health management; Ring lasers; Waveguide lasers; Integrated optoelectronics; laser tuning; optical imaging; quantum dot lasers;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/JQE.2011.2165317
Filename :
5986671
Link To Document :
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