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JOURNALS // Pis'ma v Zhurnal Èksperimental'noi i Teoreticheskoi Fiziki // Archive

Pis'ma v Zh. Èksper. Teoret. Fiz., 2003 Volume 78, Issue 4, Pages 219–223 (Mi jetpl2517)

This article is cited in 2 papers

The formation of the superheavy hydrogen isotope $^6$H in the absorption of stopped $\pi^-$-mesons by nuclei

Yu. B. Gurova, D. V. Aleshkina, S. V. Lapushkina, P. V. Morokhova, A. V. Panina, V. A. Pechkurova, N. O. Poroshina, V. G. Sandukovskiib, M. V. Tel'kusheva, B. A. Chernysheva

a Moscow Engineering Physics Institute (State University)
b Joint Institute for Nuclear Research, Dubna, Moskovskaya obl.

Abstract: An experimental search for the superheavy hydrogen isotope $^6$H was conducted through studying the absorption of stopped $pi^-$-mesons by $^9$Be and $^{11}$B nuclei. A structure in the missing mass spectrum caused by the resonance states of $^6$H was observed in three reaction channels, namely, $^9$Be($\pi^-, pd$)X, $^{11}$B($\pi^-,d^3$He)X, and $^{11}$B($\pi^-, p^4$He)X. The parameters of the lowest state $E_r=6.6\pm 0.7\,$MeV and $\Gamma=5.5\pm 2.0\,$MeV ($E_r$ is the resonance energy with respect to the disintegration into the triton and three neutrons) are evidence that $^6$H is a more weakly bound system than $^4$H and $^5$H. Three excited states of $^6$H were observed. Their resonance levels ($E_{1r}=10.7\pm 0.7\,$MeV, $\Gamma_{1r}=4\pm 2\,$MeV, $E_{2r}=15.3\pm 0.7\,$MeV, $\Gamma_{2r}=3\pm 2\,$MeV, and $E_{3r}=21.3\pm 0.4\,$MeV, $\Gamma_{3r}=3.5\pm 1.0\,$MeV ) are energetically capable of disintegrating into six free nucleons.

PACS: 21.10.-k

Received: 17.07.2003


 English version:
Journal of Experimental and Theoretical Physics Letters, 2003, 78:4, 183–187

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