Abstract

Three body recombination (TBR) process for the formation of antihydrogen (H̄) inside a trapped plasma of antiprotons (p̄) and positrons (e+), supposed to be the most efficient mechanism for the production of cold and trapped antihydrogen is studied quantum mechanically. Present study also involves a background laser field anticipating further enhancement of the H̄ formation cross sections. Significantly large cross sections are obtained in the presence of the field at lower incident energies as compared to the field free ones. Cross sections are enhanced for higher excited states of (H̄).

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