Generation of synchronized trains of picosecond laser pulses at two wavelengths in a single-cavity synchronously mode-locked dye laser

Generation of synchronized trains of picosecond laser pulses at two wavelengths in a single-cavity synchronously mode-locked dye laser Buccafusca, O. ; Rocca, Jorge, J. ; Marconi, Mario Carlos ; Menoni, Carmen S. "This work was supported by the NSF Center for Optoelectronic Computer Systems through NSF Grant No. ECD 9015128, and by the Colorado Advance Technology Institute. C. S. Menoni was supported by the Engineering Foundation AFOSR Research Initiation Grant No. RI-B-91-16." Synchronized trains of 5 ps pulses at two wavelengths were generated in a single-cavity synchronously pumped dye laser containing a mixture of two dyes in a single jet and intracavity spatial masking for frequency selection. The utilization of this dual wavelength dye laser to monitor the relaxation of photoexcited carriers in multiple quantum wells was demonstrated. Colorado State University. Libraries 1993 text ; image application/pdf ECEmcm00002.pdf FACFECEN100414ARTI eng c1993 American Institute of Physics

Generation of synchronized trains of picosecond laser pulses at two wavelengths in a single-cavity synchronously mode-locked dye laser

Buccafusca, O. ; Rocca, Jorge, J. ; Marconi, Mario Carlos ; Menoni, Carmen S.

"This work was supported by the NSF Center for Optoelectronic Computer Systems through NSF Grant No. ECD 9015128, and by the Colorado Advance Technology Institute. C. S. Menoni was supported by the Engineering Foundation AFOSR Research Initiation Grant No. RI-B-91-16."

Synchronized trains of 5 ps pulses at two wavelengths were generated in a single-cavity synchronously pumped dye laser containing a mixture of two dyes in a single jet and intracavity spatial masking for frequency selection. The utilization of this dual wavelength dye laser to monitor the relaxation of photoexcited carriers in multiple quantum wells was demonstrated.

Colorado State University. Libraries

1993

text ; image

application/pdf

ECEmcm00002.pdf

FACFECEN100414ARTI

eng

c1993 American Institute of Physics