General relativistic radiative hydrodynamic simulation by six dimensional photon Boltzmann equation
Project/Area Number |
25610044
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Research Category |
Grant-in-Aid for Challenging Exploratory Research
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Allocation Type | Multi-year Fund |
Research Field |
Astronomy
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Research Institution | Tomakomai National College of Technology |
Principal Investigator |
Takahashi Rohta 苫小牧工業高等専門学校, その他部局等, 准教授 (40513453)
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Co-Investigator(Kenkyū-buntansha) |
梅村 雅之 筑波大学, 計算科学研究センター, 教授 (70183754)
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Project Period (FY) |
2013-04-01 – 2017-03-31
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Project Status |
Completed (Fiscal Year 2016)
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Budget Amount *help |
¥3,900,000 (Direct Cost: ¥3,000,000、Indirect Cost: ¥900,000)
Fiscal Year 2015: ¥650,000 (Direct Cost: ¥500,000、Indirect Cost: ¥150,000)
Fiscal Year 2014: ¥650,000 (Direct Cost: ¥500,000、Indirect Cost: ¥150,000)
Fiscal Year 2013: ¥2,600,000 (Direct Cost: ¥2,000,000、Indirect Cost: ¥600,000)
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Keywords | ブラックホール / ボルツマン方程式 / 輻射輸送 / 輻射流体 / 一般相対論 / 輻射輸送方程式 / 並列計算 |
Outline of Final Research Achievements |
In curved spacetime such as black hole spacetime, there is no numerical method to accurately solve general relativistic (GR) photon Boltzmann equation (radiative transfer equation) for arbitrary optical thickness of photon. In this study, we proposed a new method to solve GR photon Boltzmann equation with photon processes of emission, absorption and scattering, and developed a new GR radiative transfer equation solver, ARTIST (Takahashi, Umemura, 2017, MNRAS, 464, 4567). By ARTIST code, we can perform GR radiative transfer simulations which correctly reproduce results of GR ray-tracing calculations with high accuracy.
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Report
(5 results)
Research Products
(21 results)
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[Journal Article] High-Angular-Resolution and High-Sensitivity Science Enabled by Beamformed ALMA2013
Author(s)
Fish, Vincent; Alef, Walter; Anderson, James; Asada, Keiichi; Baudry, Alain; Broderick, Avery; Carilli, Chris; Colomer, Francisco; Conway, John; Dexter, Jason; and 59 coauthors
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Journal Title
arXiv:1309.3519
Volume: 1309
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