Laser spectroscopy

For a long time laser spectroscopy has been a source of inspiration for EKSPLA laser engineers. Our tunable-wavelength, picosecond and nanosecond lasers probe matter in techniques such as SFG, pump-probe and terahertz spectroscopy, photolysis, LIBS and LIDAR.

SFG spectroscopy

Sum frequency generation vibrational spectroscopy (SFG-VS) is used to characterize vibrational bonds of molecules at surfaces or interfaces. The technique is particularly attractive because of its molecular specificity and intrinsic interfacial sensitivity. Surface sensitivity arises because, within the electric dipole approximation, generation of the sum-frequency (SF) signal from the overlapped visible and infrared beams is forbidden in media of randomly oriented molecules and in centrosymmetric media, but allowed at an interface where inversion symmetry is broken. Molecular specificity comes from the vibrational spectrum itself: resonances identify the molecular groups present at the interface.

In SFG-VS measurements, carried out with an SFG spectrometer, a pulsed tunable infrared (ωIR) laser beam is mixed with a visible (ωVIS) beam to produce an output at the sum frequency (ωSFG = ωIR + ωVIS). The SFG signal is generated in the visible spectral range, so it can be efficiently measured using sensitive detectors (PMT or CCD).

Principle of sum frequency generation vibrational spectroscopy.

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