论文标题

$^{6} $ li散射的重新审查,作为调查核中等构巨人共振的探针

Reexamination of $^{6}$Li scattering as a Probe to Investigate the Isoscalar Giant Resonances in Nuclei

论文作者

Zamora, J. C., Sullivan, C., Zegers, R. G. T., Aoi, N., Batail, L., Bazin, D., Carpenter, M., Carroll, J. J., Deloncle, I., Fang, Y. D., Fujita, H., Garg, U., Gey, G., Guess, C. J., Harakeh, M. N., Hoang, T. H., Hudson, E., Ichige, N., Ideguchi, E., Inoue, A., Isaak, J., Iwamoto, C., Kacir, C., Kobayashi, N., Koike, T., Raju, M. Kumar, Lipschutz, S., Liu, M., von Neumann-Cosel, P., Noji, S., Ong, H. J., Péru, S., Pereira, J., Schmitt, J., Tamii, A., Titus, R., Werner, V., Yamamoto, Y., Zhou, X., Zhu, S.

论文摘要

$ {}^{12} $ c和$ {}^{93} $ nb的非弹性$ {}^{6} $ li散射在$ {}^{12}上以100 meV/u的散射为$ {}^{12}^{}^{}^{}^{}^{}^{}^{}^{}^{}^{}^{}^{}^{}^{}^{}^{}^{}^{93} $ nb。光谱仪的磁性rigition设置涵盖了从10到40 MeV的激发能,并在范围内的散射角度$ 0^\ circ <θ_ {\ text {lab。}}} <2^\ circ $。等视力巨头单极共振在当前数据中有选择性地激发。没有器乐背景的测量值和非常有利的共振与核电比为$ {}^{6} $ li散射,以精确确定$ {}^{12} $ c和$ e0 $优势的精确确定。发现$ {}^{12} $ C中的单极强度$ 52 \ pm 3^^\ text {(stat。)} \ pm 8^\ pm 8^\ text {(sys。 $ {}^{93} $ nb排气中的单极强度$ 92 \ pm 4^\ text {(stat。)} \ pm 10^\ text {(sys。)} $ \%ewsr的%,并且与nuclei conteculys contections unews and t nuclei一致。这种比较表明,这些原子核中的等效巨型单极共振分布非常相似,并且没有观察到核结构引起的影响。

Inelastic ${}^{6}$Li scattering at 100 MeV/u on ${}^{12}$C and ${}^{93}$Nb have been measured with the high-resolution magnetic spectrometer Grand Raiden. The magnetic-rigidity settings of the spectrometer covered excitation energies from 10 to 40 MeV and scattering angles in the range $0^\circ < θ_{\text{lab.}}< 2^\circ$. The isoscalar giant monopole resonance was selectively excited in the present data. Measurements free of instrumental background and the very favorable resonance-to-continuum ratio of ${}^{6}$Li scattering allowed for precise determination of the $E0$ strengths in ${}^{12}$C and ${}^{93}$Nb. It was found that the monopole strength in ${}^{12}$C exhausts $52 \pm 3^\text{(stat.)} \pm 8 ^\text{(sys.)}$\% of the energy-weighted sum rule (EWSR), which is considerably higher than results from previous $α$-scattering experiments. The monopole strength in ${}^{93}$Nb exhausts $92 \pm 4^\text{(stat.)} \pm 10 ^\text{(sys.)}$\% of the EWSR, and it is consistent with measurements of nuclei with mass number of $A\approx90$. Such comparison indicates that the isoscalar giant monopole resonance distributions in these nuclei are very similar, and no influence due to nuclear structure was observed.

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