Several new vibrational bands of the [12.5] Ω = 0-XΣ and the [15.9] B Ω = 0-XΣ transitions have been observed in high resolution absorption measurements recorded using Intracavity Laser Spectroscopy (ILS). These new bands have been rotationally analyzed and incorporated into a comprehensive PtS dataset that was fit to a mass-independent Dunham expression using PGOPHER. The comprehensive dataset included all reported field-free, gas phase spectroscopic data for PtS, including 32 Fourier transform microwave transitions (estimated accuracy: 1 kHz), 9 microwave/optical double resonance transitions (25 kHz), 51 millimeter and submillimeter transitions (25-50 kHz), 469 molecular beam-laser induced fluorescence transitions (0.003 cm), and 4870 ILS transitions (0.005 cm). The determined equilibrium constants have been used with the Rydberg-Klein-Rees method to produce potential energy curves for the four known electronic states of PtS. Isotopic shifts in electronic transition energy beyond expectations from the Born-Oppenheimer approximation were observed and treated as electronic field-shift effects due to the difference in the nuclear charge radius between Pt isotopes. The magnitude and sign of the determined field-shift parameters are rationalized through the analysis of the previously reported ab initio calculations.
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http://dx.doi.org/10.1063/1.5113510 | DOI Listing |
J Chem Phys
September 2019
Department of Chemistry and Biochemistry and Center for Nanoscience, University of Missouri-St. Louis, Saint Louis, Missouri 63121, USA.
Several new vibrational bands of the [12.5] Ω = 0-XΣ and the [15.9] B Ω = 0-XΣ transitions have been observed in high resolution absorption measurements recorded using Intracavity Laser Spectroscopy (ILS).
View Article and Find Full Text PDFAstrophys J
July 2016
Universidad de Murcia. Faculdad de Química, Dpto. de Química-Física, Campus Espinardo E-30100, Murcia, Spain.
We report laboratory spectroscopy for the first time of the = 1-0 and = 2-1 lines of NaCl and NaCl in several vibrational states. The hyperfine structure has been resolved in both transitions for all vibrational levels, which permit us to predict with high accuracy the hyperfine splitting of the rotational transitions of the two isotopologues at higher frequencies. The new data have been merged with all previous works at microwave, millimeter, and infrared wavelengths and fitted to a series of mass-independent Dunham parameters and to a potential energy function.
View Article and Find Full Text PDFJ Mol Spectrosc
June 1999
Department of Physics, Toyama University, Gofuku 3190, Toyama, 930-8555, Japan
Rotational transition frequencies of ArD+ were measured with an accuracy of a few hundred kilohertz in the 0.95-4.7 THz region, using a tunable far-infrared radiation source.
View Article and Find Full Text PDFJ Mol Spectrosc
September 1998
Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge, CB2 1EW, United Kingdom
Many fundamental and hot band absorption lines of 28Si35Cl+, 28Si37Cl+, 29Si35Cl+, and 30Si35Cl+ have been detectedbetween 630 and 700 cm-1 in a SiCl4/He discharge using diode laser velocity modulation spectroscopy. The datahave been fitted to give seven mass independent coefficients Ukl. The derived spectroscopic constants for 28Si35Cl+ include omegae = 678.
View Article and Find Full Text PDFJ Mol Spectrosc
July 1998
Department of Physics, Toyama University, Gofuku 3190, Toyama, 930-8555, Japan
Pure rotational spectra of isotopic species of protonated krypton 82KrD+, 84KrD+, 86KrD+, and 82KrH+ were observed in the 0.75-3.5 THz region, using a tunable far-infrared radiation source.
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