Ultrabroadband two-dimensional electronic spectroscopy in the pump-probe geometry using conventional optics

We report ultrabroadband two-dimensional electronic spectroscopy (2D ES) measurements obtained in the pump-probe geometry using conventional optics. A phase-stabilized Michelson interferometer provides the pump-pulse delay interval, τ , necessary to obtain the excitation-frequency dimension. Spectra...

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Veröffentlicht in:Optics letters 2024-04, Vol.49 (8), p.2065-2068
Hauptverfasser: Barclay, Matthew S, Wright, Nicholas D, Cavanaugh, Paul, Pensack, Ryan D, Martin, Eric W, Turner, Daniel B
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Sprache:eng
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Zusammenfassung:We report ultrabroadband two-dimensional electronic spectroscopy (2D ES) measurements obtained in the pump-probe geometry using conventional optics. A phase-stabilized Michelson interferometer provides the pump-pulse delay interval, τ , necessary to obtain the excitation-frequency dimension. Spectral resolution of the probe beam provides the detection-frequency dimension, ω . The interferometer incorporates active phase stabilization via a piezo stage and feedback from interference of a continuous-wave reference laser detected in quadrature. To demonstrate the method, we measured a well-characterized laser dye sample and obtained the known peak structure. The vibronic peaks are modulated as a function of the waiting time, τ , by vibrational wave packets. The interferometer simplifies ultrabroadband 2D ES measurements and analysis.
ISSN:0146-9592
1539-4794
DOI:10.1364/OL.519387