Title :
Femtosecond optical pulse generation using quasi-velocity-matched electrooptic phase modulator
Author :
Kim, Dae-Sik ; Arisawa, Masato ; Morimoto, Akihiro ; Kobayashi, Tetsuro
Author_Institution :
Dept. of Electr. Eng., Osaka Univ., Japan
fDate :
9/1/1996 12:00:00 AM
Abstract :
Ultrashort optical pulses in the femtosecond range were generated from a continuous-wave (CW) narrow linewidth laser by using the chirping compression method with a highly efficient electrooptic phase modulator. Before the femtosecond pulse generation, a high modulation index electrooptic modulator specially designed was fabricated by employing the quasi-velocity-matching. In the pulse generation experiment, the electrooptic modulator and a grating pair as a negative group delay dispersion element were used for a 514.5-nm CW Ar laser. As a result, the sideband spectrum of 2.0 THz full-width half-maximum (FWHM) was produced and 560-fs optical pulses with 16.25-GHz repetition rate was successfully obtained. For this electrooptic pulse compression method is applicable to the negative group delay dispersion element as well as the positive group delay dispersion
Keywords :
argon; chirp modulation; gas lasers; laser transitions; optical dispersion; optical modulation; optical pulse compression; phase modulation; spectral line breadth; 514.5 nm; 560 fs; Ar; CW narrow linewidth laser; GHz repetition rate; THz full-width half-maximum; chirping compression method; electrooptic pulse compression method; femtosecond optical pulse generation; femtosecond pulse generation; femtosecond range; fs optical pulses; grating pair; high modulation index electrooptic modulator; highly efficient electrooptic phase modulator; negative group delay dispersion; negative group delay dispersion element; nm CW Ar laser; positive group delay dispersion; pulse generation experiment; quasi-velocity-matched electrooptic phase modulator; quasi-velocity-matching; sideband spectrum; ultrashort optical pulses; Chirp; Delay; Electrooptic modulators; Gratings; Lasers and electrooptics; Optical pulse generation; Optical pulses; Phase modulation; Pulse generation; Ultrafast optics;
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
DOI :
10.1109/2944.571749