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Collinear optical two-dimensional electronic spectroscopy with fluorescence detection at 5 kHz repetition rate

Stephen Revesz et al · AIP Publishing LLC · 2026

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Optical two-dimensional electronic spectroscopy (2DES) is a powerful ultrafast spectroscopic technique that can greatly benefit from the unique features of a femtosecond laser operating at a kHz repetition rate. Lock-in detection of phase-modulated 2DES fluorescent signals requires reference frequencies well below the Nyquist limit of the laser repetition rate. In kHz pulse laser systems, this presents a challenge as the reference frequencies can extend down to the Hz regime, approaching the high intrinsic noise floor of the laboratory environment. We present an experimental study of the signal-to-noise ratio for pump-probe and 2DES phase-modulated fluorescence detection of a rubidium vapor cell with lock-in frequencies down to ∼300 Hz. The study highlights the importance of the lock-in reference frequency in overcoming the limitations imposed by low repetition rates.

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APA 7

al, S. R. E. (2026). Collinear optical two-dimensional electronic spectroscopy with fluorescence detection at 5 kHz repetition rate. https://doi.org/10.1063/5.0243008

MLA

al, Stephen Revesz et. "Collinear optical two-dimensional electronic spectroscopy with fluorescence detection at 5 kHz repetition rate." 2026. https://doi.org/10.1063/5.0243008.

Chicago

al, Stephen Revesz et. 2026. "Collinear optical two-dimensional electronic spectroscopy with fluorescence detection at 5 kHz repetition rate.". https://doi.org/10.1063/5.0243008.

Harvard

al, S. R. E. 2026, Collinear optical two-dimensional electronic spectroscopy with fluorescence detection at 5 kHz repetition rate, AIP Publishing LLC, available at: https://doi.org/10.1063/5.0243008 [Accessed 8 Aug. 2026].

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Title
Collinear optical two-dimensional electronic spectroscopy with fluorescence detection at 5 kHz repetition rate
Author / contributors
Stephen Revesz et al
Publisher
AIP Publishing LLC
Publication year
2026
ISSN
2158-3226
ISSN
2158-3226
Language
English
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