Dynamics of Accretion Disks around Magnetized Stars
Dynamics of Accretion Disks around Magnetized Stars
批准号:
1008636
负责人:
Richard Lovelace
金额:
$31.75万
依托单位:
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-09-15 至 2013-08-31
中文摘要
吸积磁化的恒星,如经典金牛座T星(CTTSs)、灾变变星和x射线脉冲星可能具有动态重要的磁场,可以破坏吸积盘。先前nsf支持的开创性模拟表明,吸积磁化恒星可能处于稳定或不稳定的吸积状态,具有不同的观测特性(有序或随机光曲线)。如果圆盘靠近恒星,它就会通过边界层相互作用,在那里模拟显示出开尔文-亥姆霍兹型不稳定性。虽然这些模拟和相关的理论分析显示了许多有趣的特征,可以与观测相比较,但还需要进一步研究盘-磁层/盘-星相互作用,包括某种磁旋转不稳定性(MRI)的可能性。这个新项目包括对磁盘-磁层相互作用的模拟,专门针对2.5D和3D godunov型代码进行了定制,以模拟相对较薄的磁盘中mri驱动的吸积。相关的理论分析将对盘-磁层/盘-星边界不同类型的不稳定性有更深入的了解。由于ctts在旋转时间尺度上表现出多种变化特征,因此他们的光度和光谱光曲线将与模拟进行比较。光谱建模将使用三维蒙特卡罗辐射传输代码。这项研究将1)研究核磁共振驱动的磁化恒星吸积;2)从理论上和数值上研究盘-磁层和盘-星边界的不同不稳定性;3)将模拟光曲线和光谱与不同CTTSs的观测结果进行比较。这些结果将适用于不同的磁化恒星,包括ctts、突变变星、吸积棕矮星和吸积中子星。这项研究将提供一个有益的例子,将最先进的磁化恒星的2.5D和3D模型与最佳观测结果进行比较。该项目将培养多维磁流体力学现代领域的本科生、研究生和博士后研究助理。研究结果将包括在面向本科生、在校学生和康奈尔大学公众访客的讲座中。动画可视化最近被开发出来,并将在各种演讲中使用。该团队还支持在汤普金斯县科学博物馆举办展览。
英文摘要
Accreting magnetized stars, such as Classical T Tauri stars (CTTSs), cataclysmic variables, and X-ray pulsars may have dynamically important magnetic fields that can disrupt the accretion disk. Prior NSF-supported pioneering simulations have shown that accreting magnetized stars may be in stable or unstable regimes of accretion with different observational properties (ordered or stochastic light-curves). If the disk comes close to the star, it interacts through the boundary layer, where simulations have shown Kelvin-Helmholtz-type instabilities. Although these simulations and associated theoretical analyses show many interesting features which could be compared with observation, there is a need further to investigate the disk-magnetosphere/disk-star interaction, including the possibility of some type of Magneto-Rotational Instability (MRI). This new project includes simulations of the disk-magnetosphere interaction specifically tailored with 2.5D and 3D Godunov-type codes to model MRI-driven accretion in relatively thin disks. Associated theoretical analysis will give a deeper understanding of different types of instabilities at the disk-magnetosphere/disk-star boundaries. Because CTTSs show multiple variability features in rotation timescales, theirs are the photometric and spectral light-curves that will be compared with simulations. Spectrum modeling will use a 3D Monte Carlo radiative transfer code. This study will 1) investigate MRI-driven accretion onto a magnetized star; 2) investigate, theoretically and numerically, different instabilities at the disk-magnetosphere and disk-star boundaries; and 3) compare simulated light-curves and spectra with those observed in different CTTSs.The results will apply to different magnetized stars, including the CTTSs, cataclysmic variables, accreting brown dwarfs and accreting neutron stars. The research will provide a salutary example of comparing state-of-the-art 2.5D and 3D models of magnetized stars with the best available observations. The project will train undergraduate and graduate students and a postdoctoral research associate in this modern area of multidimensional magneto-hydrodynamics. Results will be included in lectures to undergraduate students, to school students, and to Cornell's public visitors. Animated visualizations have recently been developed and will be used in various talks. The team also supports an exhibit in the Tompkins County Science Museum.
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专著(0)
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会议论文
Accretion and Outflows of Rotating Magnetized Stars
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批准号:0607135
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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:Richard Lovelace
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依托单位:
Disk and Wind Accretion to Magnetized Stars
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批准号:0307817
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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:2003
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负责人:Richard Lovelace
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依托单位:
Disk and Wind Accretion to Magnetized Neutron Stars
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批准号:9986936
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项目类别:Continuing Grant
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资助金额:$15.5万
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财政年份:2000
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负责人:Richard Lovelace
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依托单位:
U.S. - Russia Cooperative Research Program on Magneto- Rotational Phenomena in Astrophysics
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批准号:9320068
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项目类别:Standard Grant
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资助金额:$0.0万
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财政年份:1994
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负责人:Richard Lovelace
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依托单位:
国内基金
海外基金
Accretion variability and its consequences: from protostars to planet-forming disks
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批准号:12173003
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项目类别:面上项目
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资助金额:60万元
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批准年份:2021
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负责人:沈雷歌
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依托单位: