Publication | Closed Access
Simple fully reflective method of scatter reduction in 2D-IR spectroscopy
16
Citations
21
References
2015
Year
EngineeringAbsorption SpectroscopyLight Scattering SpectroscopyOptical PropertiesInfrared OpticOptical SpectroscopyReflectancePhotonicsPhysicsLocal Oscillator PulseInfrared SpectroscopyScattered LightReflective Two-dimensional IrInfrared SensorNatural SciencesSpectroscopyApplied PhysicsLight ScatteringScatter ReductionSpectroscopic Method
A fully reflective two-dimensional IR (2D-IR) setup is described that enables efficient cancellation of scattered light from multiple pulses in the phase-matched direction. The local oscillator pulse and the pulse that stimulates the vibrational echo signal are synchronously modulated (or fibrillated) in time maintaining their phase relationships with the echo wavepacket. The modification is cost-effective and can be easily implemented on existing 2D-IR instruments, and it avoids the addition of dispersive elements into the beam paths. The fibrillation results in a decrease of waiting-time resolution of only tens of femtoseconds and has no impact on the spectral lineshape, making it a general improvement for 2D-IR spectrometers even for weakly or non-scattering samples.
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