Accurate Frequency Determination of Vibration–Rotation and Rotational Transitions of SiH +

  • Doménech J
  • Schlemmer S
  • Asvany O
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Abstract

The fundamental 28 SiH + ion has been characterized in a collaborative work, utilizing a hollow-cathode discharge laser spectrometer and a cryogenic ion trap spectrometer. Twenty-three vibration–rotation transitions around 4.75 μ m have been detected with high accuracy. This has facilitated the first direct measurement of the pure rotational transition J = 1 ← 0 at 453056.3632(4) MHz in the trap spectrometer. The measured and accurately predicted transitions enable the search for this ion in space with IR and sub-mm telescopes.

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Doménech, J. L., Schlemmer, S., & Asvany, O. (2017). Accurate Frequency Determination of Vibration–Rotation and Rotational Transitions of SiH +. The Astrophysical Journal, 849(1), 60. https://doi.org/10.3847/1538-4357/aa8fca

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