Two protons, two positrons, and four electrons: Covalent bond with van der Waals characteristics

Classifying interactions is key in the physical sciences, and bonding mechanisms in matter-antimatter systems remain particularly enigmatic. Here, we focus on a paradigmatic example of positronium hydride (PsH) dimer composed of two protons, two positrons, and four electrons, whose bonding nature has been previously described as either ionic, covalent, or van der Waals like. Accurate quantum Monte Carlo calculations show that the two positrons occupy a delocalized molecular orbital that envelopes the two hydrogen anions and responds as a collective dipole to an applied electric field. This positronic bonding stems from quantum correlations that resemble a single covalent bond formed between negatively charged pseudonuclei, but with a bond strength commensurate with the traditional van der Waals interaction. Our findings suggest that the ability to form delocalized proto-bonds is a more general property of quantum systems and could be present in a broader class of particles, antiparticles, and quasiparticles interacting with matter.

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Publication Details

Journal
Science Advances
Published
2026-09-30
DOI
https://doi.org/10.1126/sciadv.aej0387
Primary Topic
Muon and positron interactions and applications
Type
article
Field-Weighted Citation Impact
0.00

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article

Two protons, two positrons, and four electrons: Covalent bond with van der Waals characteristics

Alexandre Tkatchenko, Jorge A. Charry
Science Advances
Muon and positron interactions and applications
article

Two protons, two positrons, and four electrons: Covalent bond with van der Waals characteristics

Alexandre Tkatchenko, Jorge A. Charry
article en

Abstract

Classifying interactions is key in the physical sciences, and bonding mechanisms in matter-antimatter systems remain particularly enigmatic. Here, we focus on a paradigmatic example of positronium hydride (PsH) dimer composed of two protons, two positrons, and four electrons, whose bonding nature has been previously described as either ionic, covalent, or van der Waals like. Accurate quantum Monte Carlo calculations show that the two positrons occupy a delocalized molecular orbital that envelopes the two hydrogen anions and responds as a collective dipole to an applied electric field. This positronic bonding stems from quantum correlations that resemble a single covalent bond formed between negatively charged pseudonuclei, but with a bond strength commensurate with the traditional van der Waals interaction. Our findings suggest that the ability to form delocalized proto-bonds is a more general property of quantum systems and could be present in a broader class of particles, antiparticles, and quasiparticles interacting with matter.

Science AdvancesVol. 12(40)
University of Luxembourg (LU), Arbed (Luxembourg) (LU)
Fonds National de la Recherche Luxembourg
Openalex Percentile: Top 70%
Muon and positron interactions and applications
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Two protons, two positrons, and four electrons: Covalent bond with van der Waals characteristics — Alexandre Tkatchenko, Jorge A. Charry · Science Advances (2026) | TGRS Research Map | TGRS