学术通告
2021年度
2020年度
2019年度
2018年度
2017年度
2016年度
2015年度
2014年度
2013年度
2012年度
2011年度
2010年度
规章制度
通知公告
·公示 (2023-05-22)
·拟提名2023年度云南省科学技术奖励项目公示 (2023-04-20)
·全国重点文物保护单位凤凰山天文台近代建筑修缮设计和展览升级设计遴选结果的公示公告 (2023-04-13)
·全国重点文物保护单位凤凰山天文台近代建筑修缮项目设计单位遴选公告 (2023-04-04)
·全国重点文物保护单位凤凰山天文台近代建筑“薪火相传”展览升级扩展项目设计单位遴选公告 (2023-04-04)
·关于整理云南天文台凤凰山园区地磁台遗址的公告 (2023-02-03)
·中国科学院云南天文台声明 (2022-10-14)
·中国科学院云南天文台(F-P滤光器)太阳色球速度场测量系统单一来源采购方式的公示 (2022-10-14)
·中国科学院院级科技专项信息管理服务平台正式上线 (2022-08-26)
·数字化凤凰山天文台历史建筑陈列馆项目设计遴选公告 (2022-08-11)
您现在的位置:首页 > 新闻资讯 > 学术通告
【云台学术报告】2023年6月5日(星期一) 上午 10:00--11:00 1号楼502会议室
2023-05-24  |  作者:  |  【  】 【打印】 【关闭

【学术报告】

~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ 

报告题目:     The MHD-PIC method: applications and extension

报告人:     白雪宁 博士

报告人单位:  清华大学

报告语言:   中文

报告时间:   202365(星期一上午10:00 - 11:00

报告地点:    1号楼502会议室

报告摘要:

~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~

 I will first give an overview of the MHD-PIC method, which is developed to study the kinetic physics of cosmic-ray (CR) particles interacting with a background thermal plasma. It treats the background plasma as a fluid described by MHD, while treats the cosmic-rays as particles using the conventional PIC approach, with backreaction to conserve momentum and energy. It greatly alleviates the issue of scale separation encountered in conventional PIC approach for CR-related problems, such as particle acceleration in shocks. We have recently implemented this method to the Athena++ MHD code, with mesh refinement capabilities to further boost the accessible scale hierarchy. As one major application, I will describe our simulations of the CR gyro-resonant instabilities, being the key microphysical mechanism behind CR feedback that involves substantial scale separation. Our simulations enable first-principle characterization of the CR transport coefficients, which can be eventually incorporated into subgrid prescriptions of CR feedback. Finally, I will describe the extension of the method to MHD-gPIC, where particles are integrated under the guiding center approximation with drift motion, with the potential to study particle acceleration in magnetic reconnection.

~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~

个人简介:

Bio: Prof. Xuening Bai graduated from Tsinghua University with a B.S. in mathematics and physics in 2007, and obtained his PhD in astrophysics from Princeton University in 2012. He was a Hubble Fellow and Institute for Theory and Computation (ITC) fellow at the Harvard-Smithsonian Center for Astrophysics from 2012-2017. He joined the faculty at the Institute for Advanced Study, Tsinghua University in 2017, and is jointly affiliated with Department of Astronomy. He is a theoretical and computational astrophysicist. His research group studies protoplanetary disks and planet formation, as well as several aspects of plasma astrophysics especially on cosmic-ray acceleration and transport, and develops computational tools for related applications.


本通知也可以在云台学术报告网页看到: 

 http://www.ynao.cas.cn/xwzx/xstg/ 

申请安排学术报告的同事请参见台学术报告管理办法: 

 http://www.ynao.cas.cn/xwzx/xstg/gzzd/ 


云台邀请团组:太阳活动与CME理论研究团组、云南天文台青促会小组

邀请方联系人林隽,13116242627; 倪蕾18987287091

524

 
©2010  中科院云南天文台    版权所有     滇ICP备05000010号-1    滇公网安备53011102001009号
联系我们
地址:中国 云南省 昆明市 官渡区 羊方旺396号    邮编:650216
电话:86-871-63920919    传真:86-871-63920599    科普参观:86-871-63920966,63911620