Action spectroscopy of and D 2 H + using overtone excitation

Author:

Glosík Juraj1,Hlavenka P1,Plašil R1,Windisch F2,Gerlich D2,Wolf A3,Kreckel H3

Affiliation:

1. Faculty of Mathematics and Physics, Charles UniversityV Holešovickách 2, 180 00 Prague, Czech Republic

2. Institut für Physik, Technische Universität09107 Chemnitz, Germany

3. Max-Planck-Institute für Kernphysik69117 Heidelberg, Germany

Abstract

The ion and its deuterated isotopologues H 2 D + , D 2 H + and play an important role in astrophysical and laboratory plasmas. The main challenge for understanding these ions and their interaction at low temperatures are state-specific experiments. This requires manipulation and a simple but efficient in situ characterization of their low-lying rotational states. In this contribution we report measurements of near infrared (NIR) absorption spectra. Required high sensitivity is achieved by combining liquid nitrogen cooled plasma with the technique of NIR cavity ringdown absorption spectroscopy. The measured transition frequencies are then used for exciting cold ions stored in a low-temperature 22-pole radiofrequency ion trap. Absorption of a photon by the stored ion is detected by using the laser-induced reactions technique. As a monitor reaction, the endothermic proton (or deuteron) transfer to Ar is used in our studies. Since the formed ArH + (or ArD + ) ions are detected with near unit efficiency, the stored ions can be characterized very efficiently, even if there are just a few of them.

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

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