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清华大学材料科学与工程研究院《材料科学论坛》:Abstract of Project: Ultra-Fast...
Fracton Models from Product Codes
太赫兹超表面特异性识别技术及其应用
分子量及分布对高分子结晶及力学行为的影响-以聚丙烯为例
报告题目:
Non-thermal photons in the quark-gluon plasma
 报告人:
Moritz Greif
德国法兰克福大学理论物理研究所
报告时间:
2016-09-07 10:00
报告地点:
理科楼B315
主办单位:
物理系
  简介:

We investigate photon production in the non-equilibrium partonic transport approach BAMPS (Boltzmann Approach to Multi-Parton Scatterings). BAMPS serves as a microscopic tool to study expanding fireballs, employing a stochastic method to solve the relativistic 3+1d Boltzmann equation for quarks, gluons, photons and dileptons. The algorithm is able to closely reproduce the leading order photon production rate (AMY) in thermal equilibrium, using elastic and radiative microscopic scattering processes. BAMPS is applicable for the whole evolution of the quark-gluon plasma (QGP) in RHIC and LHC heavy-ion collisions, where the photon production is influenced by the chemical and thermal non-equilibrium of the early phase. Highly energetic quark- and gluon jets will convert into or radiate photons, effects we include by default. We show results for photon spectra from the QGP and investigate its role for the elliptic flow of photons. Photons induced by jet-like particles show very different momentum anisotropies compared to the radiating bulk. Dilepton contributions from the QGP are studied in a similar fashion.


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