CAREER: Measuring the Spectrum of the Cosmic Microwave Background Anisotropy on Angular Scales from 0.15 to 4 Degrees
CAREER: Measuring the Spectrum of the Cosmic Microwave Background Anisotropy on Angular Scales from 0.15 to 4 Degrees
批准号:
9732960
负责人:
Mark Devlin
金额:
$47.75万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
1998
资助国家:
美国
项目状态:
已结题
起止时间:
1998-05-15 至 2004-04-30
中文摘要
小行星9732960 该研究的主要科学目标是研究宇宙微波背景辐射(CMB)的各向异性。 宇宙微波背景辐射是宇宙大爆炸的光子残余。 通过对宇宙微波背景辐射光强度波动的观测,并通过分析数据,可以推断出大爆炸后大约10万年宇宙物质密度的波动,并利用这些信息来预测宇宙中物质的分布。 CMB的各向异性为宇宙结构形成模型提供了一个关键的测试。 不同角度尺度上的涨落大小的知识可以允许测量宇宙学参数,如宇宙的质量密度,膨胀率和重子密度。 这些参数将使我们能够了解宇宙的今天,过去和未来的演变。 研究的重点是一个积极的计划,以产生新的成果,在商业银行的研究。该计划是将地面实验和气球实验的最佳方面联合收割机结合起来。 该计划是测量光谱的各向异性的CMB的角度尺度从0.15至4分的弧,以前所未有的精度。 使用地面观测的技术已经在加拿大萨斯卡通以前的测量中得到证实。 这些测量具有很长的积分时间,但受到现场大气稳定性差的限制。 气球载观测的大气干扰可以忽略不计,但受到积分时间的限制。 为气球测量而建造的望远镜已改装成移动的各向异性望远镜,将用于在智利的高原(5,200米)进行观测。 该场所的气氛稳定,集成时间可以根据需要延长。 测量的改进将需要使用最先进的探测器技术。 一个115元的过渡边缘超导测辐射热探测器阵列工作在300 mK将建成使用的MAT望远镜。 该阵列将用于收集数据,这些数据将产生对天空大部分区域的CMB各向异性的独立测量。 最终结果将是萨斯卡通数据的灵敏度提高一个数量级或更多,角分辨率提高三倍。 其他目标是建立一个新的实验室(CMB)研究,开发一个研究计划,结合本科生和研究生,并在开发天体物理学课程中发挥核心作用。 课程将从普通本科生和天文学/天体物理学专业的课程到研究生课程。 在上述每一个方向上都已经取得了沿着重大进展。 用球载望远镜观测了宇宙微波背景辐射的数据。 本科生将能够使用一个新建立的实验室。 本科生将来自不同的背景,包括物理,机械工程和计算机科学。 一个新的天文学课程的非专业的发展将是令人兴奋的和有益的教师和学生。 该计划是扩大研究和教育活动的范围,与费城市高中发起一个外联方案,为该地区的学生提供观测天文学方面的监督项目。 ***
英文摘要
9732960 Devlin The main scientific goal of the research is to the study the anisotropy of the Cosmic Microwave Background (CMB) radiation. The CMB is the photon remnant of the Big Bang. The observations of the fluctuations in light intensity of the CMB, and by analyzing the data, the fluctuations in the matter density of the universe at roughly 100,000 years after the big bang can be inferred and this information used to predict the present distribution of matter in the universe. The anisotropy in the CMB provides a key test of models of structure formation of the Universe. The knowledge of the sizes of fluctuations on different angular scales may allow the measurements of cosmological parameters such as the mass density of the universe, the expansion rate, and the baryon density. These parameters will enable us to learn about the universe today, its past, and its future evolution. The focus of the research is an aggressive plan to produce new results in CMB research. The plan is to combine the best aspects of ground-based and balloon borne experiments. The plan is to measure the spectrum of the anisotropy of the CMB on angular scales of from 0.15 to 4 minutes of arc with unprecedented accuracy. The technique of using ground-based observations has already been proven with previous measurements made in Saskatoon, Canada.. These measurements have very long integration times, but are limited by the poor stability of the atmosphere at the site. Balloon borne observations have negligible atmospheric interference, but are limited by integration time. A telescope built for a balloon measurements has been converted into the Mobile Anisotropy Telescope (MAT) which will be used to make observations from a high plateau (5,200 m) in Chile. The atmosphere is stable at this site and integration times can be extended for as long as necessary. The improvement in the measurements will require the use of state-of-the-art detector technology. A 115 element array of transition edge superc onducting bolometric detectors operating at 300 mK will be built for use with the MAT telescope. The array will to used to collect data which will yield independent measurements of the CMB anisotropy over a large fraction of the sky. The net result will be an improvement over the sensitivity of the Saskatoon data by an order of magnitude or more, and an increase in angular resolution by a factor of three. The other goals are to establish a new laboratory for (CMB) research, to develop a research program that incorporates undergraduates and graduates, and to play a central role in developing an astrophysics curriculum. The curriculum will range from courses for general undergraduates and astronomy/astrophysics majors to courses for graduate students. Major progress has already been made along each of these directions. Data on the CMB with a balloon borne telescope has been obtained. Undergraduates will be able to use a newly established laboratory. The undergraduate students will come from a variety of backgrounds, including physics, mechanical engineering and computer science. The development of a new astronomy course for non-majors will be exciting and instructive for both the faculty and students. The plan is to extend the scope of the research and education activities by initiating an outreach program with the City of Philadelphia high schools which will provide area students with supervised projects in observational astronomy. ***
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会议论文
Mid-scale RI-2: Advanced Millimeter Survey Instrumentation in Chile
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批准号:2153201
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项目类别:Cooperative Agreement
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资助金额:$5265.26万
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财政年份:2023
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负责人:Mark Devlin
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依托单位:
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批准号:1615604
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项目类别:Standard Grant
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资助金额:$55.52万
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财政年份:2016
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负责人:Mark Devlin
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依托单位:
MUSTANG2: An Advanced 90 GHz Camera for the GBT
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批准号:1509093
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项目类别:Standard Grant
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资助金额:$10.0万
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财政年份:2015
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负责人:Mark Devlin
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依托单位:
High Resolution Observations of the Sunyaev-Zel'dovich Effect in Clusters of Galaxies at 90 GHz Using the GBT
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批准号:1309032
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项目类别:Continuing Grant
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资助金额:$50.63万
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财政年份:2013
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负责人:Mark Devlin
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依托单位:
High Resolution Observations of the Sunyaev-Zel'dovich Effect in Clusters of Galaxies and High-z Galaxies at 90 GHz Using the GBT
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批准号:1007905
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项目类别:Continuing Grant
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资助金额:$54.56万
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财政年份:2010
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负责人:Mark Devlin
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依托单位:
90 GHz Observations with the Green Bank Telescope
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批准号:0607654
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项目类别:Continuing Grant
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资助金额:$0.0万
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财政年份:2006
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负责人:Mark Devlin
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依托单位:
海外基金