DocumentCode :
1742093
Title :
Fourier-transform sum-frequency surface vibrational spectroscopy with femtosecond pulses
Author :
McGuire, J.A. ; Beck, W. ; Wei, X. ; Shen, Y.R.
Author_Institution :
California Univ., Berkeley, CA, USA
fYear :
2000
fDate :
12-12 May 2000
Firstpage :
262
Abstract :
Summary form only given. Infrared-visible sum-frequency generation (SFG) has been proven to be a powerful probe for vibrational spectroscopic investigation of surfaces and interfaces. It is highly surface specific and has a submonolayer sensitivity. As a nonlinear optical process, SFG puts a premium on high input beam intensities. One would therefore like to employ input pulses as short as possible. However at subpicosecond pulse widths, the bandwidth of pulses would already exceed the widths of many vibrational resonances of interest. By combining SFG with a Fourier transform (FT) interferometric technique we can overcome this difficulty. Using 100-fs input pulses in our SFG surface monolayer vibrational spectroscopy studies, we have obtained a spectral resolution determined only by the maximum optical path difference between the two arms of an interferometer, as is common for FT spectroscopy.
Keywords :
Fourier transform spectroscopy; infrared spectroscopy; interference spectroscopy; monolayers; optical frequency conversion; surface dynamics; time resolved spectroscopy; FT interferometric technique; FT sum-frequency surface vibrational spectroscopy; femtosecond pulses; infrared-visible sum-frequency generation; interferometer arms; maximum optical path difference; spectral resolution; submonolayer sensitivity; surface monolayer vibrational spectroscopy; Bandwidth; Nonlinear optics; Optical interferometry; Optical pulses; Optical sensors; Power generation; Probes; Space vector pulse width modulation; Spectroscopy; Ultrafast optics;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Quantum Electronics and Laser Science Conference, 2000. (QELS 2000). Technical Digest
Conference_Location :
San Francisco, CA, USA
ISSN :
1094-5695
Print_ISBN :
1-55752-608-7
Type :
conf
Filename :
902079
Link To Document :
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