Ordinary atom–mirror-atom bound states: A new window on the mirror world
- 13 September 2002
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review D
- Vol. 66 (6) , 061301
- https://doi.org/10.1103/physrevd.66.061301
Abstract
Mirror symmetry is a plausible candidate for a fundamental symmetry of particle interactions which can be exactly conserved if a set of mirror particles exist. The properties of the mirror particles seem to provide an excellent candidate to explain the inferred dark matter of the Universe and might also be responsible for a variety of other puzzles in particle physics, astrophysics, meteoritics and planetary science. One such puzzle—the orthopositronium lifetime problem—can be explained if there is a small kinetic mixing of ordinary and mirror photons. We show that this kinetic mixing implies the existence of ordinary atom–mirror-atom bound states with interesting terrestrial and astrophysical implications. We suggest that sensitive mass spectroscopic studies of ordinary samples containing heavy elements such as lead might reveal the presence of these bound states, as they would appear as anomalously heavy elements. In addition to the effects of single mirror atoms, collective effects from embedded fragments of mirror matter (such as mirror iron microparticles) are also possible. We speculate that such mirror matter fragments might explain a mysterious UV photon burst observed coming from a laser irradiated lead target in a recent experiment.Keywords
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This publication has 32 references indexed in Scilit:
- Unbroken versus broken mirror world: a tale of two vacuaJournal of High Energy Physics, 2000
- Cosmic gamma-ray burstsSurveys in High Energy Physics, 2000
- Mirror matter MACHOsPhysics Letters B, 1999
- Mirror matter and primordial black holesPhysical Review D, 1999
- Asymmetric inflationary reheating and the nature of mirror universePhysics Letters B, 1996
- Reconciling present neutrino puzzles: Sterile neutrinos as mirror neutrinosPhysical Review D, 1995
- Mirror baryons as the dark matterPhysical Review D, 1993
- A model with fundamental improper spacetime symmetriesPhysics Letters B, 1991
- The shadow world of superstring theoriesNature, 1985
- External inversion, internal inversion, and reflection invarianceInternational Journal of Theoretical Physics, 1974