Open AccessPhysicsMaterials ScienceMedicine

D. Cassidy, T. Hisakado, H. Tom, A. Mills

2012.3.30PHYSICAL REVIEW LETTERS

DOI: 10.1103/physrevlett.108.133402

tlooto Summary

Ps(2) molecules created in a porous silica film and also in vacuum from an Al(111) crystal, were resonantly excited and then photoionized by pulsed lasers, providing conclusive evidence for the production of this molecular matter-antimatter system and its excited state.

Abstract

We report optical spectroscopic measurements of molecular positronium (Ps(2)), performed via a previously unobserved L=1 excited state. Ps(2) molecules created in a porous silica film, and also in vacuum from an Al(111) crystal, were resonantly excited and then photoionized by pulsed lasers, providing conclusive evidence for the production of this molecular matter-antimatter system and its excited state. Future experiments making use of the photoionized vacuum L=1 Ps(2) could provide a source of Ps(+) ions, as well as other multipositronic systems, such as Ps(2)H(-) or Ps(2)O.

Citation format

CASSIDY, D., et al. Optical spectroscopy of molecular positronium. PHYSICAL REVIEW LETTERS, 2012, 108 13: 133402.