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清华大学材料科学与工程研究院《材料科学论坛》:Design and Properties of Hybrid...
清华大学材料科学与工程研究院《材料科学论坛》:Photoalignment for liquid crystals
Pseudo-criticality and its implication for the lost conformality
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报告题目:
Detection of the Circumgalactic Medium of Nearby Galaxies via Emission Lines
 报告人:
Dr. Huanian Zhang (Univ. of Arizona)
报告时间:
2019-06-27 14:00
报告地点:
蒙民伟科技南楼S727
主办单位:
天文系
  简介:

ABSTRACT

Galaxies are surrounded by diffuse and extended gas, which is often called the circumgalactic medium (CGM) and is the least understood part of galactic ecosystems. The CGM harbors more than 60% of the total baryons in a galaxy, is both the reservoir of gas for subsequent star formation and the depository of chemically processed gas, energy, and angular momentum from feedback. Observations and simulations of the CGM suggest that it is a multi-phase medium characterized by rich dynamics and complex ionization states. The study of the CGM has so far generally come from absorption line studies of the spectra of distant objects, typically QSOs, whose lines of sight intersect lower redshift galaxy halos. However, such study is limited by statistics. Instead, I will describe a novel approach to study the CGM via emission lines, which allows for direct mapping of individual galaxies and a variety of results obtained. 

BIO
Huanian Zhang is a postdoc at Steward Observatory, University of Arizona. However, Huanian’s path to Astrophysics and Cosmology is uncommon, since he obtained his PhD on phenomenology of Particle Physics in August, 2016. After obtaining the PhD, Huanian moved from the physics building to the astronomy building just a few blocks away. 

Huanian’s main focus now is on probing the Circumgalactic Medium (CGM). He had the first detection of CGM of nearby galaxies up to 100 kpc via Halpha and [NII] emission lines. Other than the CGM study, Huanian is also working on the all-sky search for globular clusters in the Local Volume using combined datasets of Decals, WISE and Galex and on studying the Milky Way halo structure using halo stars up to 100 kpc.

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