Broadband rapid-scanning phase-modulated Fourier transform electronic spectroscopy
We present a phase-modulated approach for ultrabroadband Fourier transform electronic spectroscopy. To overcome the bandwidth limitations and spatial chirp introduced by acousto-optic modulators (AOMs), pulses from a 1 µm laser are modulated using AOMs prior to continuum generation. This phase modul...
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Veröffentlicht in: | Optics express 2024-07, Vol.32 (16), p.28035 |
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creator | Javed, Ariba Lüttig, Julian Sanders, Stephanie E Sessa, Francesco Gardiner, Alastair T Joffre, Manuel Ogilvie, Jennifer P |
description | We present a phase-modulated approach for ultrabroadband Fourier transform electronic spectroscopy. To overcome the bandwidth limitations and spatial chirp introduced by acousto-optic modulators (AOMs), pulses from a 1 µm laser are modulated using AOMs prior to continuum generation. This phase modulation is transferred to the continuum generated in a yttrium aluminum garnet crystal. Separately generated phase-modulated continua in two arms of a Mach-Zehnder interferometer interfere with the difference of their modulation frequencies, enabling physical under-sampling of the signal and the suppression of low-frequency noise. By interferometrically tracking the relative time delay of the continua, we perform continuous, rapid-scanning Fourier transform electronic spectroscopy with a high signal-to-noise ratio and spectral resolution. As proof of principle, we measure the linear absorption and fluorescence excitation spectra of a laser dye and various biological samples. |
doi_str_mv | 10.1364/OE.530991 |
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title | Broadband rapid-scanning phase-modulated Fourier transform electronic spectroscopy |
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