在120 GeV的$p+p$和$p+d$相互作用中测量$J/ψ$和$ψleft(2S\right)$的产生

C. H. Leung, K. Nagai, K. Nakano, D. Nawarathne, J. Dove, S. Prasad, N. Wuerfel, C. A. Aidala, J. Arrington, C. Ayuso, C. L. Barker, C. N. Brown, W. C. Chang, A. Chen, D. C. Christian, B. P. Dannowitz, M. Daugherity, L. El Fassi, D. F. Geesaman, R. Gilman, Y. Goto, R. Guo, T. J. Hague, R. J. Holt, M. F. Hossain, D. Isenhower, E. Kinney, A. Klein, D. W. Kleinjan, Y. Kudo, P. -J. Lin, K. Liu, M. X. Liu, W. Lorenzon, R. E. McClellan, P. L. McGaughey, M. M. Medeiros, Y. Miyachi, S. Miyasaka, D. H. Morton, K. Nakahara, S. Nara, S. F. Pate, J. C. Peng, A. Pun, B. J. Ramson, P. E. Reimer, J. G. Rubin, F. Sanftl, S. Sawada, T. Sawada, M. B. C. Scott, T. -A. Shibata, A. S. Tadepalli, M. Teo, R. S. Towell, S. Uemura, S. G. Wang, A. B. Wickes, J. Wu, Z. H. Ye
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引用次数: 0

摘要

我们报告了在SeaQuest实验中测量到的$p+p$和$p+d$差分截面,这些截面是在120GeV束能下测量的$J/\psi$和$\psi\left(2S\right)$产生,覆盖了0.5 < x_F<0.9$的正向$x$-费曼($x_F$)范围。测得的截面与基于非相对论QCD(NRQCD)的理论计算结果吻合得很好,后者使用的是最近对质子和子诱导的粲产生数据进行全局分析时推导出的长距离矩阵元素。发现随着x_F$的增加,$\sigma_{\psi\left(2S\right)} /\sigma_{J/\psi}$截面比也会增加,这表明在$\psi\left(2S\right)$产生中,$q \bar{q}$湮灭过程比$J/\psi$产生有更大的贡献。在德雷尔-杨过程和$J/\psi$产生中,观察到$\sigma_{pd}/2\sigma_{pp}$截面比明显不同,这反映了它们不同的产生机制。我们发现,在前向$x_F$区域,$J/\psi$产生的$\sigma_{pd}/2\sigma_{pp}$比对质子海的$\bar{d}/\bar{u}$味道不对称性很敏感,这与德雷尔-扬过程类似。同时还给出了$J/\psi$和$\psi\left(2S\right)$产生的横动量($p_T$)分布,并与在更高的质心能量下收集的数据进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Measurement of $J/ψ$ and $ψ\left(2S\right)$ production in $p+p$ and $p+d$ interactions at 120 GeV
We report the $p+p$ and $p+d$ differential cross sections measured in the SeaQuest experiment for $J/\psi$ and $\psi\left(2S\right)$ production at 120 GeV beam energy covering the forward $x$-Feynman ($x_F$) range of $0.5 < x_F <0.9$. The measured cross sections are in good agreement with theoretical calculations based on the nonrelativistic QCD (NRQCD) using the long-distance matrix elements deduced from a recent global analysis of proton- and pion-induced charmonium production data. The $\sigma_{\psi\left(2S\right)} / \sigma_{J/\psi}$ cross section ratios are found to increase as $x_F$ increases, indicating that the $q \bar{q}$ annihilation process has larger contributions in the $\psi\left(2S\right)$ production than the $J/\psi$ production. The $\sigma_{pd}/2\sigma_{pp}$ cross section ratios are observed to be significantly different for the Drell-Yan process and $J/\psi$ production, reflecting their different production mechanisms. We find that the $\sigma_{pd}/2\sigma_{pp}$ ratios for $J/\psi$ production at the forward $x_F$ region are sensitive to the $\bar{d}/ \bar{u}$ flavor asymmetry of the proton sea, analogous to the Drell-Yan process. The transverse momentum ($p_T$) distributions for $J/\psi$ and $\psi\left(2S\right)$ production are also presented and compared with data collected at higher center-of-mass energies.
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