Title :
High-Frequency Self-Modulation in Short-External-Cavity VCSEL With Concave Mirror
Author :
Tao Liu ; Katayama, Takeo ; Kawaguchi, Hitoshi
Author_Institution :
Grad. Sch. of Mater. Sci., Nara Inst. of Sci. & Technol., Nara, Japan
Abstract :
We observed high-frequency modulation of optical output from a short-external-cavity vertical-cavity surface-emitting laser with a new configuration. The length L of the external cavity was reduced using a short-radius concave mirror as one end of the cavity and using a thin-film quarter-wave plate in the cavity. With a concave mirror having a radius of 20 mm, a pulse sequence based on the well-known polarization self-modulation and having a repetition rate of ~3.5 GHz was generated. When the radius was shortened to 5.08 mm, a sinusoidal modulation with a frequency of ~12.6 GHz was generated. With changing drive current, stable modulation sequences with periodic changes in the modulation frequency and polarization direction were observed at discrete current values. We found that two external-cavity modes, which were separated by nearly c/4L, selectively oscillated and the beat of them resulted in modulation of the output.
Keywords :
laser beams; laser cavity resonators; laser mirrors; optical retarders; self-phase modulation; surface emitting lasers; discrete current values; drive current; external cavity length; external-cavity modes; high-frequency modulation; high-frequency self-modulation; modulation frequency; optical output; output modulation; polarization direction; polarization self-modulation; pulse sequence; radius 20 mm; radius 5.08 mm; short-external-cavity VCSEL; short-external-cavity vertical-cavity surface-emitting laser; short-radius concave mirror; sinusoidal modulation; stable modulation sequences; thin-film quarter-wave plate; Optical modulation; Optical polarization; Optical reflection; Optical variables measurement; Vertical cavity surface emitting lasers; Beat note; concave mirror; external-cavity VCSEL; external-cavity modes; polarization-rotated feedback;
Journal_Title :
Photonics Technology Letters, IEEE
DOI :
10.1109/LPT.2014.2368582