Dark matter and Super Symmetry: Exploring and explaining the universe with simulations at the LHC

O. Gutsche
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引用次数: 1

Abstract

The Large Hadron Collider (LHC) at CERN in Geneva, Switzerland, is one of the largest machines on this planet. It is built to smash protons into each other at unprecedented energies to reveal the fundamental constituents of our universe. The 4 detectors at the LHC record multi-petabyte datasets every year. The scientific analysis of this data requires equally large simulation datasets of the collisions based on the theory of particle physics, the Standard Model. The goal is to verify the validity of the Standard Model or of theories that extend the Model like the concepts of Super Symmetry and an explanation of Dark Matter. I will give an overview of the nature of simulations needed to discover new particles like the Higgs boson in 2012, and review the different areas where simulations are indispensable: from the actual recording of the collisions to the extraction of scientific results to the conceptual design of improvements to the LHC.
暗物质和超对称:用大型强子对撞机模拟探索和解释宇宙
位于瑞士日内瓦的欧洲核子研究中心的大型强子对撞机(LHC)是这个星球上最大的机器之一。它旨在以前所未有的能量将质子相互撞击,以揭示我们宇宙的基本成分。大型强子对撞机的4个探测器每年记录数拍字节的数据集。对这些数据的科学分析需要同样大的碰撞模拟数据集,该数据集基于粒子物理学理论,即标准模型。其目标是验证标准模型或扩展模型的理论的有效性,如超对称概念和暗物质的解释。我将概述2012年发现希格斯玻色子等新粒子所需的模拟本质,并回顾模拟不可或缺的不同领域:从碰撞的实际记录到科学结果的提取,再到大型强子对撞机改进的概念设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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