Chiral molecule candidates for trapped ion spectroscopy byab initiocalculations: From state preparation to parity violation

Author:

Landau Arie12ORCID,Eduardus 3ORCID,Behar Doron14ORCID,Wallach Eliana Ruth14ORCID,Pašteka Lukáš F.35ORCID,Faraji Shirin6ORCID,Borschevsky Anastasia3ORCID,Shagam Yuval1ORCID

Affiliation:

1. Schulich Faculty of Chemistry, The Helen Diller Quantum Center and the Solid State Institute, Technion-Israel Institute of Technology 1 , Haifa 3200003, Israel

2. The Institute of Advanced Studies in Theoretical Chemistry, Technion-Israel Institute of Technology 2 , Haifa 3200003, Israel

3. Van Swinderen Institute for Particle Physics and Gravity (VSI), University of Groningen 3 , Groningen, The Netherlands

4. Physics Department, Technion-Israel Institute of Technology 4 , Haifa 3200003, Israel

5. Department of Physical and Theoretical Chemistry, Faculty of Natural Sciences, Comenius University 5 , Mlynská Dolina, 84215 Bratislava, Slovakia

6. Zernike Institute for Advanced Materials, Faculty of Science and Engineering, University of Groningen 6 , Nijenborgh 4, 9747AG Groningen, The Netherlands

Abstract

Parity non-conservation (PNC) due to the weak interaction is predicted to give rise to enantiomer dependent vibrational constants in chiral molecules, but the phenomenon has so far eluded experimental observation. The enhanced sensitivity of molecules to physics beyond the Standard Model (BSM) has led to substantial advances in molecular precision spectroscopy, and these may be applied to PNC searches as well. Specifically, trapped molecular ion experiments leverage the universality of trapping charged particles to optimize the molecular ion species studied toward BSM searches, but in searches for PNC, only a few chiral molecular ion candidates have been proposed so far. Importantly, viable candidates need to be internally cold, and their internal state populations should be detectable with high quantum efficiency. To this end, we focus on molecular ions that can be created by near threshold resonant two-photon ionization and detected via state-selective photo-dissociation. Such candidates need to be stable in both charged and neutral chiral versions to be amenable to these methods. Here, we present a collection of suitable chiral molecular ion candidates we have found, including CHDBrI+ and CHCaBrI+, that fulfill these conditions according to our ab initio calculations. We find that organo-metallic species have low ionization energy as neutrals and relatively high dissociation thresholds. Finally, we compute the magnitude of the PNC values for vibrational transitions for some of these candidates. An experimental demonstration of state preparation and readout for these candidates will be an important milestone toward measuring PNC in chiral molecules for the first time.

Funder

Israel Science Foundation

Publisher

AIP Publishing

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy

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