Review of Scientific Instruments · 2015 · 121 citations · 60 references
Thz PhotonicsTerahertz TechnologyEngineeringTerahertz PhotonicsTerahertz PhysicsOptical PropertiesInstrumentationOptical SpectroscopyBiophysicsThz Temporal WaveformPhotonicsTerahertz SpectroscopyPhysicsMultidimensional Thz SpectroscopyThz MeasurementsTerahertz NetworkTerahertz ScienceNatural SciencesSpectroscopyTerahertz TechniqueTerahertz Applications
Multidimensional spectroscopy at visible and infrared frequencies has opened a window into the transfer of energy and quantum coherences at ultrafast time scales. For these measurements to be performed in a manageable amount of time, one spectral axis is typically recorded in a single laser shot. An analogous rapid-scanning capability for THz measurements will unlock the multidimensional toolkit in this frequency range. Here, we first review the merits of existing single-shot THz schemes and discuss their potential in multidimensional THz spectroscopy. We then introduce improved experimental designs and noise suppression techniques for the two most promising methods: frequency-to-time encoding with linear spectral interferometry and angle-to-time encoding with dual echelons. Both methods, each using electro-optic detection in the linear regime, were able to reproduce the THz temporal waveform acquired with a traditional scanning delay line. Although spectral interferometry had mediocre performance in terms of signal-to-noise, the dual echelon method was easily implemented and achieved the same level of signal-to-noise as the scanning delay line in only 4.5% of the laser pulses otherwise required (or 22 times faster). This reduction in acquisition time will compress day-long scans to hours and hence provides a practical technique for multidimensional THz measurements.
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Two-dimensional spectroscopy of electronic couplings in photosynthesis
Tobias Brixner, Jens Stenger, Harsha M. Vaswani et al. · Nature · 2005 · 1.2K citations
Excited State Property, Molecular Spectroscopy, Photochemistry +9