EAGER: Undergraduate Astronomy Research and Education through Observation of Jupiter Impact Flashes to Characterize Small-Body Populations in the Outer Solar System
EAGER: Undergraduate Astronomy Research and Education through Observation of Jupiter Impact Flashes to Characterize Small-Body Populations in the Outer Solar System
批准号:
1649878
负责人:
Kunio Sayanagi
金额:
$25.92万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2016
资助国家:
美国
项目状态:
已结题
起止时间:
2016-09-15 至 2021-08-31
中文摘要
美国国家科学基金会使用探索性研究早期概念补助金(EARGER)资助机制,支持未经检验但可能具有变革性的研究想法或方法的早期探索性工作。这个渴望的项目之所以被授予,是因为在亲爱的同事信NSF 16-080中,邀请来自历史悠久的黑人学院和大学的提倡者提交建议,以加强该机构教师的研究能力。汉普顿大学的这个项目旨在探测小型物体撞击巨行星木星时产生的闪光。正如业余天文学家最近记录的撞击所证明的那样,撞击闪光的强度表明了撞击的大小;如果观察到足够的闪光,测量将揭示这些撞击的大小分布。这反过来又有助于理解外太阳系自形成以来是如何演变的。该项目将促进安装一个屋顶天文台,其中一个望远镜将由一个本科生团队操作,他们将负责进行木星撞击调查。屋顶天文台还将使该大学能够为当地中小学生以及普通公众举办外联活动。该项目的目标是测量木星撞击体的大小分布,木星撞击体被认为是起源于海王星轨道以外的木星家族彗星(JFC)的成员。大多数JFC太暗,无法从地球上直接进行望远镜观测,因此该项目将观测木星撞击,以测量否则无法观察到的物体的大小。如果JFC的大小分布显示出过去多次碰撞的迹象,这将与天王星和海王星在太阳系历史早期猛烈向外迁移和分散原始小行星物体的假设一致。如果JFC的种群包含比预期更多的碰撞碎片,这将揭示出大多数彗星最终会在与太阳的反复近距离接触中解体。如果JFC群中包含的小天体很少,这将表明至少有一些JFC自太阳系形成以来没有受到干扰。这里的主要技术挑战是检测足够数量的影响,以建立具有统计意义的大小分布。目前的探索性项目的目标是减少每年影响次数的不确定性,以便在未来进行更大规模的影响调查。这项急切的项目由数学和物理科学局共同资助。
英文摘要
The National Science Foundation uses the Early-concept Grants for Exploratory Research (EAGER) funding mechanism to support exploratory work in its early stages on untested, but potentially transformative, research ideas or approaches. This EAGER project was awarded as a result of the invitation in the Dear Colleague Letter NSF 16-080 to proposers from Historically Black Colleges and Universities to submit proposals that would strengthen research capacity of faculty at the institution. The project at Hampton University aims to detect flashes caused by small objects impacting the giant planet Jupiter. As demonstrated by recent impacts recorded by amateur astronomers, the intensity of impact flashes indicates the size of the impactors; if enough flashes are observed, the measurements will reveal the size distribution of those impactors. This in turn can help understand how the outer solar system has evolved since its formation. The project will facilitate installing a roof-top observatory, in which a telescope will be operated by a team of undergraduate students who will take charge of conducting the Jovian impact survey. The roof-top observatory will also enable the university to host outreach events for local students from elementary and high schools as well as the general public.The project's objective is to measure the size distribution of Jovian impactors, which are thought to be members of the Jupiter Family Comets (JFC) that originate beyond Neptune's orbit. Most JFCs are too dim for direct telescopic observation from Earth, so the project will observe Jupiter impacts to measure the sizes of objects that are otherwise impossible to observe. If the JFC size distribution shows signs of numerous collisions in the past, it would be consistent with the hypothesis that Uranus and Neptune violently migrated outward early in the solar system history and scattered primordial planetesimal objects. If the JFC population contains more small fragments than expected from collisions, it would reveal that most comets eventually break up during their repeated close encounters with the sun. If the JFC population contains few small objects, it would indicate that at least some JFCs have been left undisturbed since the formation of the solar system. The main technical challenge here is to detect a sufficient number of impacts to build a statistically significant size distribution. The goal of the current exploratory project is to reduce uncertainties regarding the number of impacts per year to enable a larger impact survey in the future.This EAGER project is co-funded by the Directorate for Mathematical and Physical Sciences.
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会议论文
Resolving Time-Dependent Atmospheric Dynamics on Jupiter and Saturn with Improved Planetary Cloud-Tracking Wind Measurement Methods
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批准号:1212216
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项目类别:Continuing Grant
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资助金额:$14.11万
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财政年份:2012
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负责人:Kunio Sayanagi
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依托单位:
海外基金