Quantum-state-selective electron recombination studies suggest enhanced abundance of primordial HeH<sup></sup>.

Novotný, Oldřich; Wilhelm, Patrick; Paul, Daniel; Kálosi, Ábel; Saurabh, Sunny; Becker, Arno; Blaum, Klaus; George, Sebastian et al. · Science · 2019

basic_science · Level V

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Abstract

The epoch of first star formation in the early Universe was dominated by simple atomic and molecular species consisting mainly of two elements: hydrogen and helium. Gaining insight into this constitutive era requires a thorough understanding of molecular reactivity under primordial conditions. We used a cryogenic ion storage ring combined with a merged electron beam to measure state-specific rate coefficients of dissociative recombination, a process by which electrons destroy molecular ions. We found a pronounced decrease of the electron recombination rates for the lowest rotational states of the helium hydride ion (HeH<sup>+</sup>), compared with previous measurements at room temperature. The reduced destruction of cold HeH<sup>+</sup> translates into an enhanced abundance of this primordial molecule at redshifts of first star and galaxy formation.