Coupled-channel quantum scattering on an ab initio potential energy surface yields pressure broadening and shift coefficients for pionic, kaonic, and antiprotonic helium transitions, and identifies pionic n=19 states as collisionally unstable.
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Density effects in precision laser spectroscopy of exotic helium atoms
Coupled-channel quantum scattering on an ab initio potential energy surface yields pressure broadening and shift coefficients for pionic, kaonic, and antiprotonic helium transitions, and identifies pionic n=19 states as collisionally unstable.