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- W2315746618 startingPage "1852" @default.
- W2315746618 abstract "We have studied the reaction ${K}^{+}nensuremath{rightarrow}{K}^{+}{N}^{*0}ensuremath{rightarrow}{K}^{+}{ensuremath{pi}}^{ensuremath{-}}p$ at 12 GeV/c using data obtained in an exposure of the deuterium-filled SLAC 82-in. bubble chamber to an rf-separated ${K}^{+}$ beam. The $M(p{ensuremath{pi}}^{ensuremath{-}})$ spectrum exhibits a very large enhancement below 1.8 GeV which we identify as primarily a diffractive effect. A partial-wave analysis of this enhancement shows that the data can be interpreted in terms of ${P}_{frac{1}{2}}$, ${D}_{frac{3}{2}}$, and ${F}_{frac{5}{2}}$ contributions. The ${P}_{frac{1}{2}}$ contribution which dominates at very low momentum transfers appears to peak around 1.25 GeV. If this state is associated with the Roper resonance, a mechanism which produces a downward mass shift of about 200 MeV for the diffractively produced $p{ensuremath{pi}}^{ensuremath{-}}$ decay mode is implied." @default.
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- W2315746618 date "1972-10-01" @default.
- W2315746618 modified "2023-09-27" @default.
- W2315746618 title "Study of the ReactionK+n→K+N*0at 12 GeV/c" @default.
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- W2315746618 doi "https://doi.org/10.1103/physrevd.6.1852" @default.
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