Title :
Multiple-wavelength GaInAs-GaAs vertical cavity surface emitting laser array with extended wavelength span
Author :
Arai, Masakazu ; Kondo, Takashi ; Onomura, Akihiro ; Matsutani, Akihiro ; Miyamoto, Tomoyuki ; Koyama, Fumio
Author_Institution :
Microsystem Res. Center, Tokyo Inst. of Technol., Yokohama, Japan
Abstract :
The wavelength engineering of vertical cavity surface emitting lasers (VCSEL) on a nonplanar substrate enables us to realize a multiwavelength VCSEL array. We are able to control the wavelength of both a cavity resonance and the gain peak of an active region, depending on patterned shapes. A main limiting factor in expanding the wavelength span in arrays is the offset between the gain peak and the resonant wavelength. In order to overcome this offset, we optimized a gain-cavity detuning to extend the wavelength span. A wavelength span of over 100 nm was obtained from a fabricated 12-channel array. The output power is over 1 mW, and threshold current is 0.65 ± 0.2 mA. We carried out the compensation of the threshold current-density variation by the precise control of oxide apertures in each element. In addition, we proposed a growth-pressure control in epitaxial growth on a patterned substrate for further extension of the lasing wavelength span. We demonstrated a 0.96-1.16-μm multiple-wavelength VCSEL array with highly strained GaInAs-GaAs QWs exhibiting a record wavelength span of 192 nm. These technologies would enable low-cost wideband wavelength division multiplexing data links.
Keywords :
III-V semiconductors; MOCVD; gallium arsenide; indium compounds; laser cavity resonators; optical communication equipment; optical fabrication; quantum well lasers; semiconductor laser arrays; surface emitting lasers; 0.63 to 0.67 mA; 0.96 to 1.16 mum; 12-channel array; GaInAs-GaAs; cavity resonance; epitaxial growth; gain peak; gain-cavity detuning; growth-pressure control; multiwavelength VCSEL array; resonant wavelength; vertical cavity surface emitting lasers; wavelength span; Apertures; Optical arrays; Power generation; Resonance; Shape control; Substrates; Surface emitting lasers; Surface waves; Threshold current; Vertical cavity surface emitting lasers;
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
DOI :
10.1109/JSTQE.2003.819520