课题基金 / 基金详情

Collaborative Research: Cosmic Magnetic Fields; Origin, Evolution, and Signatures

Collaborative Research: Cosmic Magnetic Fields; Origin, Evolution, and Signatures
合作研究:宇宙磁场;
批准号:
1108790
负责人:
Arthur Kosowsky
金额:
$6.0万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-09-01 至 2014-08-31

项目摘要

项目成果

Arthur Kosowsky的其他基金

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中文摘要
翻译
AST-1109180/1109275/1108790 Kahniashvili/Ratra/Kosowsky观测表明星系的磁场在大部分星系中具有相干分量,具有确定的场强和相干尺度。 理解这些场的起源是现代天体物理学中更具挑战性的问题之一。 目前有两种图像:一种是自下而上(天体物理学)的,在较小的尺度上产生种子场,另一种是自上而下(宇宙学)的,在星系形成之前在现在的大尺度上产生种子场。 该项目旨在回答几个相关问题:(一)磁场是如何以及何时产生的?(ii)它在宇宙膨胀过程中是如何演化的?(iii)这个种子磁场的振幅和统计特性能否解释大尺度结构中观测到的磁场特性?(iv)种子磁场能通过宇宙学观测探测到吗?如果是这样,(v)对这样一个原始磁场的观测约束是什么?该跨学科项目分为以下相关部分:(1)根据现有数据确定星系际磁场极限;(2)研究宇宙学大尺度相关磁场产生机制;(3)用数值方法研究宇宙膨胀期间磁场的演变;(4)用数值方法研究星系形成期间种子磁场放大和动力学;以及(5)预测宇宙学种子磁场的可观测特征。 这个独特的专家团队将大大提高目前对宇宙磁场的起源,演变,观测极限和预测特征的理解。 该研究包括高能物理,数据分析和解释,磁流体动力学过程的数值模拟,以及星系和早期结构形成的重要工作。 也许最重要的是,我们有机会证明观测需要一个宇宙学磁场,而这种磁场是粒子物理学标准模型范围内的任何机制都无法产生的。教育方面包括本科生和研究生的培训。 一个充满活力的教育和公共宣传计划涉及北中央堪萨斯天文学会,堪萨斯州立大学中心的了解起源,西奥多罗斯福小学(曼哈顿,堪萨斯),阿勒格尼天文台在匹兹堡大学,斯坦福大学的“飞溅!为高中生举办的活动,以及爱丁堡州立大学的外联活动。 而且,作为国际合作的一部分,主要PI将在格鲁吉亚的Abastumani天体物理观测站为本科生举办宇宙学教育课程。
英文摘要
AST-1109180/1109275/1108790Kahniashvili/Ratra/KosowskyObservations show that galaxies have magnetic fields with a component that is coherent over a large fraction of the galaxy, with defined field strength and coherence scale. Understanding the origin of these fields is one of the more challenging questions of modern astrophysics. There are currently two pictures: a bottom-up (astrophysical) one, generating the seed field on smaller scales, and a top-down (cosmological) version, generating the seed field prior to galaxy formation on scales that are now large. This project aims to answer several relevant questions: (i) How and when was the magnetic field generated? (ii) How does it evolve during the expansion of the universe? (iii) Can the amplitude and statistical properties of this seed magnetic field explain the properties of the observed magnetic fields in large-scale structures? (iv) Is the seed magnetic field detectable through cosmological observations? And if so, (v) what are the observational constraints on such a primordial magnetic field?The interdisciplinary project divides into the following related parts: (1) determining intergalactic magnetic field limits from currently available data; (2) studying cosmological large-scale correlated magnetic field generation mechanisms; (3) numerically studying the evolution of the magnetic field during the expansion of the universe; (4) numerically studying seed magnetic field amplification and dynamics during galaxy formation; and (5) predicting observable signatures of a cosmological seed magnetic field. This unique team of experts will significantly improve the current understanding of the origin, evolution, observational limits, and predicted signatures, of a cosmic magnetic field. The research includes important work in high energy physics, data analysis and interpretation, numerical simulation of magnetohydrodynamic processes, and galaxy and early structure formation. Perhaps most importantly, there is a chance to establish that observations demand a cosmological magnetic field that cannot be generated by any mechanism operating within the confines of the Standard Model of particle physics.The educational aspects include the training of undergraduate and graduate students. A vigorous education and public outreach program involves the North Central Kansas Astronomical Society, the KSU Center for the Understanding of Origins, Theodore Roosevelt Elementary School (Manhattan, Kansas), Allegheny Observatory at the University of Pittsburgh, the Stanford University 'Splash!' events for high school students, and Pittsburg State University outreach events. And, as part of an international collaboration, the primary PI will conduct cosmology education sessions for undergraduate students at Abastumani Astrophysical Observatory, Georgia.
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