Structure and stability of the negative hydrogen molecular ion

We present the results of a Coulomb explosion experiment that allows for the imaging of the rovibrational wave function of the metastable H2- ion. Our measurements confirm the predicted large internuclear separation of 6 a.u., and they show that the ion decays by autodetachment rather than by sponta...

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Veröffentlicht in:Physical review letters 2011-11, Vol.107 (19), p.193003-193003, Article 193003
Hauptverfasser: Jordon-Thaden, B, Kreckel, H, Golser, R, Schwalm, D, Berg, M H, Buhr, H, Gnaser, H, Grieser, M, Heber, O, Lange, M, Novotný, O, Novotny, S, Pedersen, H B, Petrignani, A, Repnow, R, Rubinstein, H, Shafir, D, Wolf, A, Zajfman, D
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Sprache:eng
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Zusammenfassung:We present the results of a Coulomb explosion experiment that allows for the imaging of the rovibrational wave function of the metastable H2- ion. Our measurements confirm the predicted large internuclear separation of 6 a.u., and they show that the ion decays by autodetachment rather than by spontaneous dissociation. Imaging of the resulting H2 products reveals a large angular momentum of J = 25 ± 2, quantifying the rotation that leads to the metastability of this most fundamental molecular anion.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.107.193003