참고문헌
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ApJ
v.538
Sagittarius
$A^*$ polarization: no advectiondominated accretion flow, low accretion rate, and nonthermal synchrotron emission Agol,E. https://doi.org/10.1086/312818 - Nature v.413 Rapid X-ray flaring from the direction of the supermassive black hole at the Galactic center Baganoff,F.K.;Bautz,M.W.;Brandt,W.N.;Chartas,G.;Feigelson,E.D.;Garmire,G.P.;Macda,Y.;Morris,M.;Ricker,G.R.;Towmsley,L.K.;Walter,F. https://doi.org/10.1038/35092510
- A&A v.388 Circular polarization of radio emission from relativistic jets Beckert,T.;Falcke,H. https://doi.org/10.1051/0004-6361:20020484
- MNRAS v.303 On the fate of gas accreting at a low rate on to a black hole Blandford,R.D.;Begelman,M.C. https://doi.org/10.1046/j.1365-8711.1999.02358.x
- ApJ v.571 The spectrum and variability of circular polarization in Sagittarius A* from 1.4 to 15GHz Bower,G.C.;Falcke,H.;Sault,R.J.;Backer,D.C. https://doi.org/10.1086/340064
- ApJ v.588 Interferometric detection of linear polarization from Sagittarius A* at 230 GHz Bower,G.C.;Wright,M.C.H.;Falcke,H.;Backer,D.C. https://doi.org/10.1086/373989
- JASS v.18 Can a wind model mimic a convection-dominated accretion flow model? Chang,H.Y.
- ApJ v.551 Cooling a hot disk around a supermassive black nole by a star Chang,H.Y. https://doi.org/10.1086/320023
- JKAS v.35 Iron line profiles from relativistic elliptical accretion disks Chang,H.Y.;Choi,C.S. https://doi.org/10.5303/JKAS.2002.35.3.123
- A&A, Astro-ph/0306496 Radio variability of the Sagittarius A* due to an orbiting star Chang,H.Y.;Choi,C.S. https://doi.org/10.1051/0004-6361:20031264
- JKAS v.34 X-Ray archival data analysis of time variabilities in seyfert galaxy MCG-2-58-22 Choi,C.S.;Dotani,T.;Yi,I.;Fletcher,A.;Kim,C.
- JKAS v.35 Longterm X-ray variabilities of the Seyfert galaxy MCG-2-58-22: secular flux decrease and flares Choi,C.S.;Dotani,T.;Chang,H.Y;Yi,I.
- Bright stars and an inactive disk in Sgr A* and other dormant galaxy centers Ⅰ.The optically thick disk, astro-ph/0304533 Cuadra,J.;Nayakshin,S.;Sunyaev,R. https://doi.org/10.1051/0004-6361:20031350
- ApJ v.369 Luminosity enhancement factor for thermal Comptonization and the electron energy balance Dermer,C.D.;Liang,E.P.;Canfield,E. https://doi.org/10.1086/169770
- A&A v.286 The spectrum of SGR A* and its variability Duschl,W.J.;Lesch,H.
- Nature v.415 Astronomy: X-rays reveal the Galaxy's centre Eckart,A. https://doi.org/10.1038/415148a
- MNRAS v.284 Stellar proper motions in the central 0.1 PC of the Galaxy Eckart,A.;Genzel,R. https://doi.org/10.1093/mnras/284.3.576
- A&A v.362 The jet model for Sar A*: radio and X-ray spectrum Falcke,H.;Markoff,S.
- ApJ v.576 Adaptive optics near-infrared spectroscopy of the Sagittarius A* cluster Gezari,S.;Ghez,A.M.;Becklin,E.E.;Larkin,J.;McLean,I.S.;Morris,M. https://doi.org/10.1086/341807
- ApJ v.509 High proper-motion stars in the vicinity of Sagittarius A*: evidence for a supermassive black hole at the center of our Galaxy Ghez,A.M.;Klein,B.L.;Morris,M.;Becklin,E.E. https://doi.org/10.1086/306528
- ApJ v.586 The first measurement of spectral lines in a short-period star bound to the Galazy's central black hole: a paradox of youth Ghez,A.M.;Duchene,G.;Matthews,K.;Hornstein,S.D.;Tanner,A.;Larkin,J.;Morris,M.;Becklin,E.E.;Salim,S.;Kremenek,T.;Thompson,D.;Soifer,B.T.;Neugebauer,G.;McLean,I. https://doi.org/10.1086/374804
- ApJ v.584 A new X-ray flare from the galactic nucleus detected with the XMM-Newton photon imaging cameras Goldwurm,A.;Brion,E.;Goldni,P.;Ferrando,P.;Daigne,F.;Decourchelle,A.;Warwick,R.S.;Predehl,P. https://doi.org/10.1086/345749
- MNRAS v.278 Energetics of star-disc encounters in the non-linear regime Hall,S.M.;Clarke,C.J.;Pringle,J.E.
- ApJ v.516 The spectral energy distributions of lowluminosity active galactic muclei Ho,L.C. https://doi.org/10.1086/307137
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ApJ
v.577
Limits on the short-term variability of Sagittarius
$A^*$ in the near-infrared Hornstein,S.D.;Ghez,A.M.;Tanner,A.;Morris,M.;Becklin,E.E.;Wizinowich,P. https://doi.org/10.1086/344098 - ApJ v.214 Bimodal behavior of accretion diskstheory and application to Cygnus X-1 transitions Ichimaru,S. https://doi.org/10.1086/155314
- ApJ v.549 A new model of a tidally disrupted star Ivanov,P.B.;Novikov,I.D. https://doi.org/10.1086/319050
- Black hole accretion disks Kato,S.;Fukue,J.;Mineshige,s.
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ApJ
v.566
An accretion-induced X-ray flare in Sagittarius
$A^*$ Liu,S.;Melia,F. https://doi.org/10.1086/339693 - ApJ v.477 Scaling laws for advection-dominated flows: applications to low-luminosity galactic nuclei Mahadevan,R. https://doi.org/10.1086/303727
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ApJ
v.489
Spectrum of optically thin advection-dominated accretion flow around a black hole: application to Sagittarius
$A^*$ Manmoto,T.;Mineshige,S.;Kusunose,M. https://doi.org/10.1086/304817 - A&A v.379 The nature of the 10 kilosecond X-ray flare in Sar A* Markoff,S.;Falcke,H.;Yuan,F.;Biermann,P.L. https://doi.org/10.1051/0004-6361:20011346
- ARA&A v.31 X-ray spectra and time variability of active galactic nuclei Mushotzky,R.F.;Done,C.;Pounds,K.A. https://doi.org/10.1146/annurev.aa.31.090193.003441
- ApJ v.539 Self-similar accretion flows with convection Narayan,R.;Igumenshchev,I.V.;Abramowicz,M.A. https://doi.org/10.1086/309268
- Theory of Black Hole Accretion Disks Advection-dominated accretion around black holes Narayan,R.;Mahadevan,R.;Quataert,E.;M.A.Abramowicz(ed.);G.Bjornsson(ed.);J.E.Pringle(ed.)
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ApJ
v.492
Advection-dominated accretion model of Sagittarius
$A^*$ : evidence for a black hole at the Galactic center Narayan,R.;Mahadevan,R.;Grindlay,J.E.;Popham,R.G.;Gammie,C. - ApJ v.428 Advection-dominated accretion: a self-similar solution Narayan,R.;Yi,I. https://doi.org/10.1086/187381
- ApJ v.452 Advection-dominated accretion: underfed black holes and neutron stars Narayan,R.;Yi,I. https://doi.org/10.1086/176343
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Nature
v.374
Explaining the spectrum of Sagittarius
$A^*$ with a model of an accreting black-hole Narayan,R.;Yi,I.;Mahadevan,R. https://doi.org/10.1038/374623a0 -
ApJ
v.517
What is the accretion rate in Sagittarius
$A^*$ ? Quataert,E.;Narayan,R.;Reid,M.J. https://doi.org/10.1086/312035 - ApJ v.539 Convection-dominated accretion flows Quataert,E.;Gruzinov,A. https://doi.org/10.1086/309267
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ApJ
v.545
Constraining the accretion rate onto Sagittarius
$A^*$ using linear polarization Quataert,E.;Gruzinov,A. https://doi.org/10.1086/317845 - ARA&A v.22 Black hole models for active galactic nuclei Rees,M.J. https://doi.org/10.1146/annurev.aa.22.090184.002351
- Nature v.333 Tidal disruption of stars by black holes of 10 to the 6th-10 to the 8th solar masses in nearby galaxies Rees,M.J. https://doi.org/10.1038/333523a0
- Nature v.295 Ion-supported tori and the origin of radio jets Rees,M.J.;Phinney,E.S.;Begelman,M.C.;Blandford,R.D. https://doi.org/10.1038/295017a0
- Nature v.419 A star in a 15.2-year orbit around the supermassive black hole at the centre of the Milky Way Schodel,R.;Ott,T.;Genzel,R.;Hofmann,R.;Lehnert,M.;Eckart,A.;Mouawad,N.;Alexander,T.;Reid,M.J.;Lenzen,R.;Hartung,M.;Lacombe,F.;Rouan,D.;Gendron,E.;Rousset,G.;Lagrange,A.M.;Brandner,W.;Ageorges,N.;Lidman,C.;Moorwood,A.F.M.;Spyromilio,J.;Hubin,N.;Menten,K.M. https://doi.org/10.1038/nature01121
- A&A v.24 Black holes in binary systems. observational appearance Shakura,N.I.;Sunyaev,R.A.
- MNRAS v.204 Numerical FITS to important rates in high temperature astrophysical plasmas Stepney ,S.;Guilbert,P.W. https://doi.org/10.1093/mnras/204.4.1269
- MNRAS v.250 Star-disc interactions near a massive black hole Syer,D.;Clarke,C.J.;Rees,M.J. https://doi.org/10.1093/mnras/250.3.505
- ApJ v.531 Advection-dominated inflow/outflows from evaporating accretion disks Turolla,R.;Dullemond,C.P. https://doi.org/10.1086/312527
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ApJ
v.547
Radio variability of Sagittarius
$A^*$ -a 106 day cycle Zhao,J.H.;Bower,G.C.;Goss,W.M. https://doi.org/10.1086/318877 -
ApJ
v.586
Variability of Sagittarius
$A^*$ : flares at 1 millimeter Zhao,J.H.;Young,K.H.;Herrnstein,R.M.;Ho,P.T.P.;Tsutsumi,T.;Lo,K.Y.;Goss,W.M.;Bower,G.C. https://doi.org/10.1086/374581