First Direct Measurements of Superheavy-Element Mass Numbers

An experiment was performed at Lawrence Berkeley National Laboratory's 88-in. Cyclotron to determine the mass number of a superheavy element. The measurement resulted in the observation of two α-decay chains, produced via the ^{243}Am(^{48}Ca,xn)^{291-x}Mc reaction, that were separated by mass-...

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Veröffentlicht in:Physical review letters 2018-11, Vol.121 (22), p.222501-222501
Hauptverfasser: Gates, J M, Pang, G K, Pore, J L, Gregorich, K E, Kwarsick, J T, Savard, G, Esker, N E, Kireeff Covo, M, Mogannam, M J, Batchelder, J C, Bleuel, D L, Clark, R M, Crawford, H L, Fallon, P, Hubbard, K K, Hurst, A M, Kolaja, I T, Macchiavelli, A O, Morse, C, Orford, R, Phair, L, Stoyer, M A
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Sprache:eng
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Zusammenfassung:An experiment was performed at Lawrence Berkeley National Laboratory's 88-in. Cyclotron to determine the mass number of a superheavy element. The measurement resulted in the observation of two α-decay chains, produced via the ^{243}Am(^{48}Ca,xn)^{291-x}Mc reaction, that were separated by mass-to-charge ratio (A/q) and identified by the combined BGS+FIONA apparatus. One event occurred at A/q=284 and was assigned to ^{284}Nh (Z=113), the α-decay daughter of ^{288}Mc (Z=115), while the second occurred at A/q=288 and was assigned to ^{288}Mc. This experiment represents the first direct measurements of the mass numbers of superheavy elements, confirming previous (indirect) mass-number assignments.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.121.222501