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Mass-correlated rotational Raman spectra with high resolution, broad bandwidth, and absolute frequency accuracy
Christian Schröter1, Jong Chan Lee1, Thomas Schultz2
1Department of Chemistry, Ulsan National Institute of Science and Technology, Eonyang-eup, Ulju-gun, Ulsan, 44919, Republic of Korea.
Abstract:
We present mass-correlated rotational alignment spectroscopy, based on the optical excitation of a coherent rotational quantum wave and the observation of temporal wave interferences in a mass spectrometer. Combined electronic and opto-mechanical delays increased the observation time and energy resolution by an order of magnitude compared with preceding time-domain measurements. Rotational transition frequencies were referenced to an external clock for accurate absolute frequency measurements. Rotational Raman spectra for six naturally occurring carbon disulfide isotopologues were resolved with 3 MHz resolution over a spectral range of 500 GHz. Rotational constants were determined with single-kilohertz accuracy, competitive with state-of-the-art frequency domain measurements.
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