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- W2951410620 abstract "Recent high-precision mass measurements and shell model calculations~[Phys. Rev. Lett. {bf 108}, 212501 (2012)] have challenged a longstanding explanation for the requirement of a cubic isobaric multiplet mass equation for the lowest $A = 9$ isospin quartet. The conclusions relied upon the choice of the excitation energy for the second $T = 3/2$ state in $^9$B, which had two conflicting measurements prior to this work. We remeasured the energy of the state using the $^9{rm Be}(^3{rm He},t)$ reaction and significantly disagree with the most recent measurement. Our result supports the contention that continuum coupling in the most proton-rich member of the quartet is not the predominant reason for the large cubic term required for $A = 9$ nuclei." @default.
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- W2951410620 date "2018-11-26" @default.
- W2951410620 modified "2023-09-26" @default.
- W2951410620 title "Second T=3/2 state in B9 and the isobaric multiplet mass equation" @default.
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- W2951410620 doi "https://doi.org/10.1103/physrevc.98.051302" @default.
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