中文

在 $^3{\rm He} (K^-, \Lambda p)n$ 反应中观测到 $\bar{K}NN$ 束缚态

核实验 2020-10-21 v1

摘要

我们以 1 GeV/c1\ {\rm GeV}/c 的入射K介子动量对 K+ ⁣ 3HeΛpnK^{-}+\! ~^{3}{\rm He} \to \Lambda pn 反应进行了排他性测量。在 Λp\Lambda p 不变质量谱中,在 Kˉ ⁣+ ⁣N ⁣+ ⁣N\bar{K}\!+\!N\!+\!N 的质量阈值以下观测到一个清晰的峰,作为介子核束缚态 KˉNN\bar{K}NN 的信号。观测到该态的结合能、衰变宽度和 SS 波高斯反应形状因子分别为 BK=42±3(stat.)4+3(syst.) MeVB_{K} = 42\pm3({\rm stat.})^{+3}_{-4}({\rm syst.})\ {\rm MeV}ΓK=100±7(stat.)9+19(syst.) MeV\Gamma_{K} = 100\pm7({\rm stat.})^{+19}_{-9}({\rm syst.})\ {\rm MeV}QK=383±11(stat.)1+4(syst.) MeV/cQ_{K} = 383\pm11({\rm stat.})^{+4}_{-1}({\rm syst.})\ {\rm MeV}/c。由其 Λp\Lambda p 衰变模式确定的 KˉNN\bar{K}NN 总产生截面为 σKtotBRΛp=9.3±0.8(stat.)1.0+1.4(syst.) μb\sigma^{tot}_{K} \cdot BR_{\Lambda p} = 9.3\pm0.8({\rm stat.})^{+1.4}_{-1.0}({\rm syst.})\ \mu{\rm b}。通过假设导致 ΣN ⁣N\Sigma N\!N 末态的物理过程与 Λpn\Lambda pn 的类似,我们估计 KˉNN\bar{K}NN 态到 Λp\Lambda pΣ0p\Sigma^{0}p 衰变模式的分支比约为 BRΛp/BRΣ0p1.7BR_{\Lambda p}/BR_{\Sigma^{0}p} \sim 1.7

关键词

引用

@article{arxiv.2006.13433,
  title  = {Observation of a $\bar{K}NN$ bound state in the $^3{\rm He} (K^-, \Lambda p)n$ reaction},
  author = {T. Yamaga and S. Ajimura and H. Asano and G. Beer and H. Bhang and M. Bragadireanu and P. Buehler and L. Busso and M. Cargnelli and S. Choi and C. Curceanu and S. Enomoto and H. Fujioka and Y. Fujiwara and T. Fukuda and C. Guaraldo and T. Hashimoto and R. S. Hayano and T. Hiraiwa and M. Iio and M. Iliescu and K. Inoue and Y. Ishiguro and T. Ishikawa and S. Ishimoto and K. Itahashi and M. Iwai and M. Iwasaki and K. Kanno and K. Kato and Y. Kato and S. Kawasaki and P. Kienle and H. Kou and Y. Ma and J. Marton and Y. Matsuda and Y. Mizoi and O. Morra and T. Nagae and H. Noumi and H. Ohnishi and S. Okada and H. Outa and K. Piscicchia and Y. Sada and A. Sakaguchi and F. Sakuma and M. Sato and A. Scordo and M. Sekimoto and H. Shi and K. Shirotori and D. Sirghi and F. Sirghi and S. Suzuki and T. Suzuki and K. Tanida and H. Tatsuno and M. Tokuda and D. Tomono and A. Toyoda and K. Tsukada and O. Vazquez Doce and E. Widmann and T. Yamazaki and H. Yim and Q. Zhang and J. Zmeskal},
  journal= {arXiv preprint arXiv:2006.13433},
  year   = {2020}
}

备注

13 pages, 12 figures