Breakdown of the isobaric multiplet mass equation at A = 33, T = 3/2. Herfurth, F., Dilling, J., Kellerbauer, A., Audi, G., Beck, D., Bollen, G., Kluge, H., J., Lunney, D., Moore, R., B., Scheidenberger, C., Schwarz, S., Sikler, G., & Szerypo, J. Physical Review Letters, 87(14):142501, American Physical Society, 9, 2001.
Breakdown of the isobaric multiplet mass equation at A = 33, T = 3/2 [link]Website  abstract   bibtex   
The mass of charged particles with a half-life in the order of 100 ms was measured using a Penning trap. The accuracy remained comparable to Penning trap mass measurements of longer-lived species. This was made possible by the development of a new efficient transfer of the ISOLDE ions into the trap using a RFQ ion beam cooler and buncher and a rapid measurement technique.
@article{
 title = {Breakdown of the isobaric multiplet mass equation at A = 33, T = 3/2},
 type = {article},
 year = {2001},
 identifiers = {[object Object]},
 pages = {142501},
 volume = {87},
 websites = {https://link.aps.org/doi/10.1103/PhysRevLett.87.142501},
 month = {9},
 publisher = {American Physical Society},
 day = {13},
 id = {6213ef2f-edee-3d64-8d42-b98fe607f834},
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 abstract = {The mass of charged particles with a half-life in the order of 100 ms was measured using a Penning trap. The accuracy remained comparable to Penning trap mass measurements of longer-lived species. This was made possible by the development of a new efficient transfer of the ISOLDE ions into the trap using a RFQ ion beam cooler and buncher and a rapid measurement technique.},
 bibtype = {article},
 author = {Herfurth, F. and Dilling, J. and Kellerbauer, A. and Audi, G. and Beck, D. and Bollen, G. and Kluge, H. J. and Lunney, D. and Moore, R. B. and Scheidenberger, C. and Schwarz, S. and Sikler, G. and Szerypo, J.},
 journal = {Physical Review Letters},
 number = {14}
}
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