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强子物理新发展研讨会

Asia/Shanghai
Online

Online

Description

强子物理新发展研讨会(Online)

会议截图

 

 

 

 

 

 

 

 

 

 

 

 

随着众多新强子的发现,强子物理进入了一个新时期,在很多方向上有许多新发展。有必要组织一次专门讨论这个议题的研讨会。本次会议由中国科学院大学、中国科学院理论物理研究所、中国科学技术大学共同主办,由中国科学技术大学承办。

会议研讨内容:

强子物理作为中高能核物理研究的重要前沿领域,其主旨是研究强子结构和性质,以及强子间相互作用。近期,随着实验数据的大量累积,其中包括我国的北京正负电子对撞机上的BESIII实验、兰州冷却储存环,欧洲核子研究中心大型强子对撞机上的LHCb、ALICE、Compass实验,美国Jefferson实验室和布鲁克海文国家实验室的RHIC、日本KEK的B工厂以及RIKEN的JPAC实验等国际重要的高能物理实验设施,强子物理实验和理论研究取得了飞速发展。另一方面,近几年随着格点计算和分析能力的迅速突破,格点QCD逐步实现与实验和相关理论工作接轨,并开始发挥强大的作用。结合中高能核物理实验,理论和格点三方面的工作成为强子物理研究未来的重要研究方向。本次研讨会旨在促进国内三方面科研工作者的交流,讨论国际上相关领域的前沿动态和发展趋势,推动国内科研队伍在相关领域的合作交流和深入研究。

会议注册:

无注册费

会议注册网址:https://indico.ihep.ac.cn/event/11349/overview

会议注册截至日期:2020年4月24日

日程安排

2020年4月24日-26日网络会议报告

会议主办单位:

中国科学院大学,中国科学院理论物理研究所,上海理工大学,中国科学技术大学

会议组织人:

吴佳俊(中国科学院大学)

郭奉坤(中国科学院理论物理研究所)

庞锦毅(上海理工大学)

Satoshi Nakamura(中国科学技术大学)

浦实 (中国科学技术大学)

会议联系人:

浦实(中国科学技术大学),0551-63601165,  shipu@ustc.edu.cn

庞锦毅(上海理工大学), jypang@usst.edu.cn

 

参会说明:

由于疫情期间情况特殊,本会议将采取网络会议的形式。为了保证通话质量,我们将采用 腾讯会议 软件来主持会议。会议期间您可以通过点击下方链接加入网络会议:

https://meeting.tencent.com/s/50Nxo6P8a3e4

会议 ID:399 811 654

为了确保通话质量,建议您下载 腾讯会议 软件(无需注册用户),同时进入会议时请关闭视频。

Participants
  • Bingsong ZOU
  • Chaowei Shen
  • Chu-Wen Xiao
  • De-Liang Yao
  • Dian-Yong Chen
  • Duojie Jia
  • Fanrong Xu
  • Fei Huang
  • Gang Li
  • Hao-Hao Peng
  • Hong-shi Zong
  • Hong-Zhong Wu
  • Hongxia Huang
  • Hua-Xing Chen
  • IRFAN SIDDIQUE
  • Jia-jie Han
  • Jian-Ping Ma
  • jie zhu
  • Jin-Yi Pang
  • Jin-Yi Pang
  • Jinyun Wu
  • Li Ma
  • maojun yan
  • Meng-na Tang
  • modi lin
  • Qian 王倩
  • Qun Wang
  • Renjie Wang
  • Rong-Gang Ping
  • Rui-Cheng(瑞成) LI(李)
  • Satoshi Nakamura
  • Sen Jia
  • Shi Pu
  • Shuxian Du
  • Wei Chen
  • Wei Wang
  • Weimin Song
  • Xian-Hui Zhong
  • Xiangkun Dong
  • Xiao-Hai Liu
  • Xiao-Rui Lyu
  • Xiaodong Shi
  • Xiaolin Kang
  • Xiaorong Zhou
  • Xingbo Zhao
  • Xiqing Hao (郝喜庆)
  • Xueyi LAO
  • Yan Li
  • Yangheng Zheng
  • Yonghui Lin
  • Yu Gao
  • zejian zhuang
  • Zeyu Zhai
  • Zhaofeng Liu
  • zhengya li
  • Zhi-Hui Guo
  • 乐乐 魏
  • 二亮 崔
  • 伟 郝
  • 佳俊 吴
  • 俊杰 张
  • 俊雅 王
  • 冠颖 王
  • 唯 梁
  • 妍 严
  • 妍 王
  • 宵玉 张
  • 建荣 张
  • 恩 王
  • 慧敏 杨
  • 欣力 盛
  • 海波 李
  • 玉斌 刘
  • 瑞瑞 董
  • 科伟 魏
  • 立叶 肖
  • 翔 刘
  • 聚军 谢
  • 茂志 杨
  • 豪杰 景
  • 超 韩
  • 阳光 杨
  • 雷 常
  • 黎明 张
  • 齐放 吕
  • 齐男 王
    • 1
      会议开幕
    • 2
      BESIII上超子物理及其CP破坏实验研究进展
      The CKM mechanism for CP violation in the Standard Model (SM) fails to explain the matter-antimatter asymmetry of the Universe by more than 10 orders-of-magnitude. This suggests that additional CP violating processes occur, and motivates aggressive searches for new, non-SM sources of CP violation. To date, CP violation in hyperon decays have never been observed. Standard Model CP violations in hyperon decays are expected to be ∼ 10^-4 to 10^-5, and any value higher than this level would be a signature of new, beyond the SM physics. Currently BESIII has collected about 10 billion J/psi decay events, the decay rate of J/psi to hyperon-anti-hyperon pairs are 10^-3, which indicates that the produced hyperon pairs will be a few millions. In this talk I will present the first observation of transverse polarization of hyperon-anti-hyperon from the e+e- --> J/psi --> hyperon-anti-hyperon pairs, which allows us to measure the decay asymmetry parameters of both hyperon and anti-hyperon, therefore CP asymmetry in the hyperon decay can be precisely obtained with 5 dimensional fit to data. We expect that the study of hyperon physics will be the next frontier of the SM CP searches.
      Speaker: Prof. Hai-Bo Li (IHEP)
      Slides
    • 3
      Belle实验上奇异粲介子对系统的研究
      Belle实验上奇异粲介子对系统的研究
      Speaker: 森 贾 (Beihang University)
      Slides
    • 4
      The newly observered Omega(2012) as a KbarXi(1530) hadronic molecule
      Recently, Belle collaboration measured the ratios of the branching fractions of the newly observed $\Omega(2012)$ excited state. They did not observe significant signals for the $\Omega(2012) \to \bar{K} \Xi^*(1530) \to \bar{K} \pi \Xi$ decay, and reported an upper limit for the ratio of the three body decay to the two body decay mode of $\Omega(2012) \to \bar{K} \Xi$. In this work, we revisit the newly observed $\Omega(2012)$ from the molecular perspective where this resonance appears to be a dynamically generated state with spin-parity $3/2^-$ from the coupled channels interactions of the $\bar{K} \Xi^*(1530)$ and $\eta \Omega$ in $s$-wave and $\bar{K} \Xi$ in $d$-wave. With the model parameters for the $d$-wave interaction, we show that the ratio of these decay fractions reported recently by the Belle collaboration can be easily accommodated.
      Speaker: Prof. 聚军 谢 (中国科学院近代物理研究所)
      Slides
    • 5
      Why DSEs?
      Why DSEs?
      Speaker: 雷 常 (Nankai University)
    • 6
      Hadron Structure on the Light-front
      In this talk I will report our recent progress on the structure of light mesons, heavy quarkonia and the nucleon studied in a basis light-front approach. I will present the preliminary results on the observables such as the form factors, the parton distribution function and the generalized parton distribution functions of these systems.
      Speaker: Xingbo Zhao (Iowa State University)
      Slides
    • 7
      Dibaryons and pentaquarks in quark models
      Dibaryons and pentaquarks in quark models
      Speaker: Prof. Hongxia Huang (Nanjing Normal University)
      Slides
    • 8
      BESIII实验上的粲强子衰变研究
      BESIII实验上的粲强子衰变研究
      Speaker: Prof. Xiao-Rui Lyu (University of Chinese Academy of Sciences)
      Slides
    • 9
      Recent results on hadron spectroscopy at LHCb
      I will present several new results on observations of excited baryons at LHCb
      Speaker: Liming Zhang (Tsinghua University)
      Slides
    • 10
      Decay properties of molecular states
      Decay properties of molecular states
      Speaker: 殿勇 陈 (东南大学)
    • 11
      ssss四夸克态
      本次报告准备介绍我们使用QCD求和规则研究ssss四夸克强子态的一些情况。在研究工作中,我们构造了所有可能的试探流,然后考虑了这些试探流的混合,得到的结果和相关实验进行了比较。
      Speaker: Dr Hua-Xing Chen (Beihang University)
      Slides
    • 12
      Solution to the Y problem
      Solution to the Y problem
      Speaker: 俊璋 王 (Lanzhou University)
    • 13
      1-+奇特态
      1-+奇特态
      Speaker: 相坤 董 (UCAS)
      Slides
    • 14
      Jetomography of QGP in heavy-ion collisions
      Jetomography of QGP in heavy-ion collisions
      Speaker: Prof. Xin-Nian Wang (Central China Normal University/Lawrence Berkeley National Laboratory)
      Slides
    • 15
      BESIII上的超子极化研究
      BESIII上的超子极化研究
      Speaker: Dr Rong-Gang Ping (高能所)
      Slides
    • 16
      DDK 3-body system in Lattice QCD
      The lattice QCD simulation has been generating 3-body hadron spectrum already. The finite volume analysis is necessary to translate these lattice spectra in a finite volume to physical information in the infinite volume. Based on non-relativistic effective field theory, we show the preliminary result of lattice spectrum for DDK 3-body system. In the work, the 2-body information is input referring to arXiv:1906.11995. And 3-body bound state predicted by arXiv:1906.11995 is reproduced in effective field theory. The lattice spectra both below and above threshold are given. They can be compared with future lattice 3-body simulation.
      Speaker: Dr Jin-Yi Pang (University of Shanghai Science and Techology)
      Slides
    • 17
      Lattice calculation of hadron structure: parton distribution functions
      In this talk, I will introduce the new method of using Lattice QCD to simulate the Parton distribution functions.
      Speaker: Prof. Wei Wang (Shanghai JiaoTong University)
    • 18
      Identifying the $\Sigma_b(6097)$, $\Xi_b(6227)$ and $\Omega_b$ as P-wave bottom baryons
      In this talk, I would like to report our recent studies on spectra and decay properties of the excited bottom baryons, $\Sigma_b(6097)$, $\Xi_b(6227)$ and four narrow $\Omega_b$ states, which were newly discovered by LHCb collaboration. At first, we calculated the spectra of P-wave bottom baryons by using the QCD sum rule. The estimations are well consistent with the experimental results. Then We also utilized the method of light−cone sum rules, which is widely used to study the hadron decays in recent years. Our estimations suggest that the bottom baryons $\Sigma_{b}(6097)^{\pm}$ and $\Xi_{b}(6227)^-$ both belong to the P−wave bottom baryon doublet $[\mathbf{6}{F},2,1,\lambda]$, whose color is symmetric $\mathbf{6}_{F}$, the total angular momentum of light system is 2, the spin of light system is 1, and it is $\lambda$−type excitation. And the four narrow $\Omega_b$ states can also be explained as the P-wave bottom baryons but belong to different excitation types. We also made some other predictions.
      Speaker: Dr Er-Liang Cui (Northwest A&F University)
      Slides
    • 19
      Triangle singularity appearing as an X(3872)-like peak in $B\to(J/\psi \pi+ \pi-)K\pi$
      Triangle singularity appearing as an X(3872)-like peak in $B\to(J/\psi \pi+ \pi-)K\pi$
      Speaker: Dr Satoshi Nakamura (Universidade Cruzeiro do Sul)
      Slides
    • 20
      闭幕式
      Speaker: Hai-Ping Peng (USTC)