4.4 Article

A microchip-laser-pumped DFB-polymer-dye laser

Journal

APPLIED PHYSICS B-LASERS AND OPTICS
Volume 73, Issue 2, Pages 105-109

Publisher

SPRINGER-VERLAG
DOI: 10.1007/s003400100619

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A miniaturized, high repetition rate, picosecond all solid state photo-induced distributed feedback (DFB) polymer-dye laser is described by applying a passively Q-switched and frequency-doubled Cr4+:Nd3+:YAG-microchip laser (pulse width Delta tau = 540ps, repetition rate nu = 3 kHz, pump energy E-pump = 0.15 muJ) as a pump source. A poly-methylmethacrylate film doped with rhodamine B dye serves as active medium. The DFB-laser pulses are temporally and spectrally characterized, and the stability of the thin polymer/dye film at high repetition rates is analyzed. The shortest DFB-laser pulses obtained have a duration of 11 ps. After the emission of 350 000 pulses the intensity of the DFB-laser output has decreased by a factor of two and the pulse duration has increased by a factor of 1.2. For single DFB-laser pulses of 20-ps duration the spectral bandwidth is measured to be Delta lambda = 0.03 nm, which is only 0.005 nm above the calculated Fourier limit assuming a Gaussian profile for the temporal shape of the pulses. Coarse wavelength tuning of the DFB laser between 590 and 619 nm is done by turning the prism. Additionally, a fine tuning of the DFB-polymer-laser wavelength is achieved by changing the temperature of the polymer/dye layer ( d lambda /dT = -0.05 nm/degreesC) in the range from 20 to 40 degreesC.

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