A Study of Proto-Planetary System Candidates
A Study of Proto-Planetary System Candidates
批准号:
9520989
负责人:
Kwang-Ping Cheng
金额:
$10.88万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
1995
资助国家:
美国
项目状态:
已结题
起止时间:
1995-11-01 至 1998-10-31
中文摘要
小行星9520989 太阳系的起源是天体物理学中最基本的问题之一。 研究这个问题的一种方法是研究仍处于行星形成阶段的系统。 对美如画β(A5 IV-V)的深入研究揭示了星星周围的尘埃盘和动态气体包层(显示质量流入和流出)。 Beta Pic的年龄(2亿年)大致相当于我们太阳系中行星形成和随后的“重轰炸”时代。 因此,很可能β Pic的尘埃+气体盘类似于原始太阳星云中的吸积盘。 然而,仍然没有解决为什么Beta Pic似乎有这样一个动态的尘埃+气体盘,每年大约有100-200次质量下降事件。 对于β Pic的吸积机制,以及碎片盘与其星周气体之间的关系的理解,还远远没有完成。 这是一个仍在形成中的年轻行星系统,还是一个尘埃原恒星吸积盘在清理阶段的残余? 需要确定和研究其他类似于Beta Pic的具有碎片盘和拱星气体的系统,以回答这些问题。 在附近的A型恒星(如Beta Pic)周围探测到星周碎片,为探索可能的原行星系统提供了一个无与伦比的机会,这些系统可能在演化的早期阶段类似于我们自己的太阳系。 因此,将完成对原行星系统候选者的搜索。 对这些系统进行研究的最终目标是确定它们作为一个群体是否代表了行星形成的某个阶段。 将追求三个主要目标: (1)利用红外天文卫星(IRAS)的暗源巡天(FSS)数据识别附近有星周尘埃的主序星A型恒星。 虽然很难通过直接成像来探测尘埃盘,但人们可以通过探测与轨道颗粒热辐射一致的过量红外波长发射来推断星周尘埃的存在。 (2)获得体积有限的A星样品的高分辨率可见光和紫外波长光谱,以研究星周气体的存在、电离和运动学。 这些高分辨率的光谱可以用来检测狭窄的拱星气体吸收光谱的功能和量的拱星气体的视线将被推断。 可见光和紫外波长的星周吸收线将相互比较,以测试类彗星天体的蒸发是否是在体积有限的A星巡天中在Beta Pic和其他几颗Beta Pic星的光谱中看到的可变红移线的原因。 (3)测试气体吸积发生在这些行星系统候选者的碎片盘内部区域的假设。 这些系统可能具有与原始太阳星云相似的物理性质。 研究这些原行星系统的星周环境的动力学性质,将为了解行星系统的形成提供有价值的见解。
英文摘要
9520989 Cheng The origin of our own solar system is one of the most fundamental problems in astrophysics. One way to investigate this problem is to study systems that are still in the phase of planet formation. Intensive studies of Beta Pictoris (A5 IV-V) have revealed a dust disk and a dynamic gas envelope (showing both mass infall and outflow) around the star. The age of Beta Pic (200 million years) roughly corresponds to the era of planet formation and subsequent "heavy bombardment" in our solar system. Therefore, it is likely that Beta Pic's dust + gas disk is similar to the accretion disk in the primordial solar nebula. However, it is still not resolved why Beta Pic seems to have such a dynamic dust + gas disk, with about 100-200 mass infall events each year. The understanding of the accretion mechanism in Beta Pic, and of the relationship between the debris disk and its circumstellar gas, is far from complete. Is this a young planetary system still undergoing formation, or is it the remnant of a dusty proto-stellar accretion disk in its clearing phase? Other systems similar to Beta Pic with debris disks and circumstellar gas need to be identified and studied to answer the questions. The detection of circumstellar debris around nearby A type stars, such as ,Beta Pic, provides an unparalleled opportunity to explore possible proto-planetary systems that could resemble our own Solar System at an early stage of evolution. Therefore, a search for proto-planetary system candidates will be completed. The ultimate goal of this study of these systems is to ascertain if they, as a group, represent some phase of planet formation. Three major objectives will be pursued: (1) Identify nearby main-sequence A type stars that have circumstellar dust, using the Infrared Astronomical Satellite (IRAS) Faint Source Survey (FSS) data. Although it is very difficult to detect dust disks by direct imaging, one can infer the presence of circumstellar dust by the det ection of excess infrared wavelength emission that is consistent with thermal radiation from the orbiting grains. (2) Obtain high-resolution visible and ultraviolet wavelength spectra of the volume-limited A-star sample to study the presence, ionization, and kinematics of the circumstellar gas. These high-resolution spectra can be used to detect narrow circumstellar gas absorption spectra features and the amount of circumstellar gas in the line of sight will be inferred. The visible and ultraviolet wavelength circumstellar absorption lines will be compared to each other to test whether the evaporation of cometary-like bodies is responsible for the variable redshifted lines seen in spectra of Beta Pic and several other Beta Pic-like stars in the volume-limited A-star survey. (3) Test the hypothesis that gaseous accretion is occurring in the inner regions of the debris disks of these planetary system candidates. These systems might have physical properties similar to those of the primordial solar nebula. The study of the dynamic nature of these proto-planetary system's circumstellar environments will provide valuable insight into the formation of planetary systems.
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会议论文
RUI/Collaborative Research: A Spectroscopic Survey of Circumstellar Gas in Lambda Boo Stars
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批准号:1211213
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项目类别:Standard Grant
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资助金额:$15.27万
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财政年份:2012
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负责人:Kwang-Ping Cheng
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依托单位:
RUI: A Detailed Study of the Circumstellar Environment Around Neaby A-Type Stars: Possible Planet Construction Zones
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批准号:9819737
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项目类别:Continuing Grant
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资助金额:$19.97万
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财政年份:1999
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负责人:Kwang-Ping Cheng
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依托单位:
海外基金