Modeling of the Wind/Disk Outflow from Be Stars
Abstract
:1. Introduction
2. Methods
2.1. Radiative Acceleration
2.2. System of Equations
2.3. Dimensionless Variables
2.4. Boundary Conditions
2.5. Verification
3. Results
3.1. Structure of the Flow
3.2. Role of Turbulence
4. Discussion
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Dubus, G. Gamma-ray binaries and related systems. A&ARv 2013, 21, 64. [Google Scholar] [CrossRef] [Green Version]
- Johnston, S.; Manchester, R.N.; Lyne, A.G.; Bailes, M.; Kaspi, V.M.; Qiao, G.; D’Amico, N. PSR 1259-63—A binary radio pulsar with a Be star companion. ApJ 1992, 387, L37–L41. [Google Scholar] [CrossRef]
- Melatos, A.; Johnston, S.; Melrose, D.B. Stellar wind and stellar disc models of dispersion and rotation measure variations in the PSR B1259-63/SS2883 binary system. Mon. Not. R. Astron. Soc. 1995, 275, 381–397. [Google Scholar] [CrossRef] [Green Version]
- Negueruela, I.; Ribó, M.; Herrero, A.; Lorenzo, J.; Khangulyan, D.; Aharonian, F.A. Astrophysical Parameters of LS 2883 and Implications for the PSR B1259-63 Gamma-ray Binary. Astrophys. J. 2011, 732, L11. [Google Scholar] [CrossRef]
- Johnston, S.; Manchester, R.N.; McConnell, D.; Campbell-Wilson, D. Transient radio emission from the PSR B1259-63 system near periastron. Mon. Not. R. Astron. Soc. 1999, 302, 277–287. [Google Scholar] [CrossRef] [Green Version]
- Johnston, S.; Ball, L.; Wang, N.; Manchester, R.N. Radio observations of PSR B1259-63 through the 2004 periastron passage. Mon. Not. R. Astron. Soc. 2005, 358, 1069–1075. [Google Scholar] [CrossRef] [Green Version]
- Kirk, J.G.; Ball, L.; Skjæraasen, O. Inverse Compton emission of TeV gamma rays from PSR B1259-63. Astropart. Phys. 1999, 10, 31–45. [Google Scholar] [CrossRef] [Green Version]
- Aharonian, F.; Akhperjanian, A.G.; Aye, K.M.; Bazer-Bachi, A.R.; Beilicke, M.; Benbow, W.; Berge, D.; Berghaus, P.; Bernlöhr, K.; Boisson, C.; et al. Discovery of the binary pulsar PSR B1259-63 in very-high-energy gamma rays around periastron with HESS. Astrono. Astrophys. 2005, 442, 1–10. [Google Scholar] [CrossRef]
- Aharonian, F.; Akhperjanian, A.G.; Anton, G.; Barres de Almeida, U.; Bazer-Bachi, A.R.; Becherini, Y.; Behera, B.; Bernlöhr, K.; Bochow, A.; Boisson, C.; et al. Very high energy γ-ray observations of the binary PSR B1259-63/SS2883 around the 2007 Periastron. Astron. Astrophys. 2009, 507, 389–396. [Google Scholar] [CrossRef]
- Abdo, A.A.; Ackermann, M.; Ajello, M.; Allafort, A.; Ballet, J.; Barbiellini, G.; Bastieri, D.; Bechtol, K.; Bellazzini, R.; Berenji, B.; et al. Discovery of High-energy Gamma-ray Emission from the Binary System PSR B1259-63/LS 2883 around Periastron with Fermi. Astrophys. J. 2011, 736, L11. [Google Scholar] [CrossRef] [Green Version]
- Chernyakova, M.; Abdo, A.A.; Neronov, A.; McSwain, M.V.; Moldón, J.; Ribó, M.; Paredes, J.M.; Sushch, I.; de Naurois, M.; Schwanke, U.; et al. Multiwavelength observations of the binary system PSR B1259-63/LS 2883 around the 2010–2011 periastron passage. Mon. Not. R. Astron. Soc. 2014, 439, 432–445. [Google Scholar] [CrossRef] [Green Version]
- Neronov, A.; Chernyakova, M. Radio-to-TeV γ-ray emission from PSR B1259 63. Ap&SS 2007, 309, 253–259. [Google Scholar] [CrossRef]
- Chernyakova, M.; Neronov, A.; van Soelen, B.; Callanan, P.; O’Shaughnessy, L.; Babyk, I.; Tsygankov, S.; Vovk, I.; Krivonos, R.; Tomsick, J.A.; et al. Multi-wavelength observations of the binary system PSR B1259-63/LS 2883 around the 2014 periastron passage. Mon. Not. R. Astron. Soc. 2015, 454, 1358–1370. [Google Scholar] [CrossRef] [Green Version]
- Caliandro, G.A.; Cheung, C.C.; Li, J.; Scargle, J.D.; Torres, D.F.; Wood, K.S.; Chernyakova, M. Gamma-Ray Flare Activity from PSR B1259-63 during 2014 Periastron Passage and Comparison to Its 2010 Passage. ApJ 2015, 811, 68. [Google Scholar] [CrossRef] [Green Version]
- Johnson, T.J.; Wood, K.S.; Kerr, M.; Corbet, R.H.D.; Cheung, C.C.; Ray, P.S.; Omodei, N. A Luminous and Highly Variable Gamma-Ray Flare Following the 2017 Periastron of PSR B1259-63/LS 2883. ApJ 2018, 863, 27. [Google Scholar] [CrossRef]
- Chang, Z.; Zhang, S.; Chen, Y.P.; Ji, L.; Kong, L.D.; Liu, C.Z. The GeV emission of PSR B1259-63 during its last three periastron passages observed by Fermi-LAT. Res. Astron. Astrophys. 2018, 18, 152. [Google Scholar] [CrossRef] [Green Version]
- Khangulyan, D.; Bogovalov, S.V.; Aharonian, F.A. Binary Pulsar System PSR B1259-63/LS2883 as a Gamma-Ray Emitter. Int. J. Mod. Phys. Conf. Ser. 2014, 28, 1460169. [Google Scholar] [CrossRef]
- Bogovalov, S.V.; Khangulyan, D.; Koldoba, A.; Ustyugova, G.V.; Aharonian, F. Modelling the interaction between relativistic and non-relativistic winds in binary pulsar systems: Strong magnetization of the pulsar wind. Mon. Not. R. Astron. Soc. 2019, 490, 3601–3607. [Google Scholar] [CrossRef]
- Snow, T.P.J. Stellar winds and mass-loss rates from Be stars. ApJ 1981, 251, 139–151. [Google Scholar] [CrossRef]
- Grady, C.A.; Bjorkman, K.S.; Snow, T.P. Highly Ionized Stellar Winds in Be Stars: The Evidence for Aspect Dependence. ApJ 1987, 320, 376. [Google Scholar] [CrossRef]
- Waters, L.B.F.M.; Cote, J.; Lamers, H.J.G.L.M. IRAS observations of Be stars. II. Far-IR characteristics and mass loss rates. A&A 1987, 185, 206–224. [Google Scholar]
- Rímulo, L.R.; Carciofi, A.C.; Vieira, R.G.; Rivinius, T.; Faes, D.M.; Figueiredo, A.L.; Bjorkman, J.E.; Georgy, C.; Ghoreyshi, M.R.; Soszyński, I. The life cycles of Be viscous decretion discs: Fundamental disc parameters of 54 SMC Be stars. Mon. Not. R. Astron. Soc. 2018, 476, 3555–3579. [Google Scholar] [CrossRef] [Green Version]
- Ghoreyshi, M.R.; Carciofi, A.C.; Rímulo, L.R.; Vieira, R.G.; Faes, D.M.; Baade, D.; Bjorkman, J.E.; Otero, S.; Rivinius, T. The life cycles of Be viscous decretion discs: The case of ω CMa. Mon. Not. R. Astron. Soc. 2018, 479, 2214–2228. [Google Scholar] [CrossRef]
- Porter, J.M.; Rivinius, T. Classical Be Stars. PASP 2003, 115, 1153–1170. [Google Scholar] [CrossRef]
- Touhami, Y. Circumstellar Disks around Rapidly Rotating Be-type Stars. Am. Astron. Soc. Meet. Abstr. 2012, 219, 404.02. [Google Scholar]
- Carciofi, A.C. The circumstellar discs of Be stars. In Active OB Stars: Structure, Evolution, Mass Loss, and Critical Limits; Neiner, C., Wade, G., Meynet, G., Peters, G., Eds.; IAU Symposium; Cambridge University Press: Cambridge, UK, 2011; Volume 272, pp. 325–336. [Google Scholar] [CrossRef] [Green Version]
- Cranmer, S.R.; Owocki, S.P. The effect of oblateness and gravity darkening on the radiation driving in winds from rapidly rotating B stars. ApJ 1995, 440, 308–321. [Google Scholar] [CrossRef]
- Owocki, S.P.; Cranmer, S.R.; Gayley, K.G. Inhibition FO Wind Compressed Disk Formation by Nonradial Line-Forces in Rotating Hot-Star Winds. ApJ 1996, 472, L115. [Google Scholar] [CrossRef]
- Petrenz, P.; Puls, J. 2-D non-LTE models of radiation driven winds from rotating early-type stars. I. Winds with an optically thin continuum. A&A 2000, 358, 956–992. [Google Scholar]
- Porter, J.M. Continuum IR emission of Be star wind-compressed discs. A&A 1997, 324, 597–605. [Google Scholar]
- Wheelwright, H.E.; Bjorkman, J.E.; Oudmaijer, R.D.; Carciofi, A.C.; Bjorkman, K.S.; Porter, J.M. Probing the properties of Be star discs with spectroastrometry and NLTE radiative transfer modelling: β CMi. Mon. Not. R. Astron. Soc. 2012, 423, L11–L15. [Google Scholar] [CrossRef] [Green Version]
- Kraus, S.; Monnier, J.D.; Che, X.; Schaefer, G.; Touhami, Y.; Gies, D.R.; Aufdenberg, J.P.; Baron, F.; Thureau, N.; ten Brummelaar, T.A.; et al. Gas Distribution, Kinematics, and Excitation Structure in the Disks around the Classical Be Stars β Canis Minoris and ζ Tauri. Astrophys. J. 2012, 744, 19. [Google Scholar] [CrossRef] [Green Version]
- Vieira, R.G.; Carciofi, A.C.; Bjorkman, J.E. Non-Isothermal effects on Be Disks. In Bright Emissaries: Be Stars as Messengers of Star-Disk Physics; Sigut, T.A.A., Jones, C.E., Eds.; Astronomical Society of the Pacific: Pasadena, CA, USA, 2016; Volume 506, p. 135. Available online: http://xxx.lanl.gov/abs/1604.03775 (accessed on 10 September 2021).
- Haubois, X.; Mota, B.C.; Carciofi, A.C.; Draper, Z.H.; Wisniewski, J.P.; Bednarski, D.; Rivinius, T. Dynamical Evolution of Viscous Disks around Be Stars. II. Polarimetry. ApJ 2014, 785, 12. [Google Scholar] [CrossRef]
- Vieira, R.G.; Carciofi, A.C.; Bjorkman, J.E.; Rivinius, T.; Baade, D.; Rímulo, L.R. The life cycles of Be viscous decretion discs: Time-dependent modelling of infrared continuum observations. Mon. Not. R. Astron. Soc. 2017, 464, 3071–3089. [Google Scholar] [CrossRef] [Green Version]
- Lee, U. Viscous Decretion Discs around Rapidly Rotating Stars. PASJ 2013, 65, 122. [Google Scholar] [CrossRef] [Green Version]
- Owocki, S. Formation and Evolution of Disks around Classical Be Stars. In Stars with the B[e] Phenomenon; Kraus, M., Miroshnichenko, A.S., Eds.; Astronomical Society of the Pacific Conference Series; Astronomical Society of the Pacific: Pasadena, CA, USA, 2006; Volume 355, p. 219. [Google Scholar]
- Rivinius, T.; Carciofi, A.C.; Martayan, C. Classical Be stars. Rapidly rotating B stars with viscous Keplerian decretion disks. A&ARv 2013, 21, 69. [Google Scholar] [CrossRef] [Green Version]
- Bogovalov, S.V.; Petrov, M.A.; Timofeev, V.A. Winds from fast rotating stars. Mon. Not. R. Astron. Soc. 2021, 502, 2409–2418. [Google Scholar] [CrossRef]
- Kee, N.D.; Owocki, S.; Townsend, R.; Müller, H.R. Pulsational Mass Ejection in Be Star Disks. In Bright Emissaries: Be Stars as Messengers of Star-Disk Physics; Sigut, T.A.A., Jones, C.E., Eds.; Astronomical Society of the Pacific Conference Series; Astronomical Society of the Pacific: Pasadena, CA, USA, 2016; Volume 506, p. 47. Available online: http://xxx.lanl.gov/abs/1412.8511 (accessed on 10 September 2021).
- Kroll, P.; Hanuschik, R.W. Dynamics of Self-Accreting Disks in Be Stars. In IAU Colloq. 163: Accretion Phenomena and Related Outflows; Wickramasinghe, D.T., Bicknell, G.V., Ferrario, L., Eds.; Astronomical Society of the Pacific: Pasadena, CA, USA, 1997; Volume 121, p. 494. [Google Scholar]
- Smith, M.A.; Murakami, T.; Ezuka, H.; Anand arao, B.G.; Chakraborty, A.; Corcoran, M.F.; Hirata, R. Dynamic Processes in Be Star Atmospheres. VI. Simultaneous X-Ray, Ultraviolet, and Optical Variations in λ Eridani. ApJ 1997, 481, 479–488. [Google Scholar] [CrossRef] [Green Version]
- Neiner, C.; Mathis, S.; Saio, H.; Lee, U. Be Star Outbursts: Transport of Angular Momentum by Waves. In Progress in Physics of the Sun and Stars: A New Era in Helio- and Asteroseismology; Shibahashi, H., Lynas-Gray, A.E., Eds.; Astronomical Society of the Pacific: Pasadena, CA, USA, 2013; Volume 479, p. 319. Available online: http://xxx.lanl.gov/abs/1311.2411 (accessed on 10 September 2021).
- Cassinelli, J.P.; Brown, J.C.; Maheswaran, M.; Miller, N.A.; Telfer, D.C. A Magnetically Torqued Disk Model for Be Stars. Astrophys. J. 2002, 578, 951–966. [Google Scholar] [CrossRef] [Green Version]
- Brown, J.C.; Cassinelli, J.P.; Maheswaran, M. Magnetically Fed Hot Star Keplerian Disks with Slow Outflow. ApJ 2008, 688, 1320–1325. [Google Scholar] [CrossRef] [Green Version]
- Lee, U.; Osaki, Y.; Saio, H. Viscous excretion discs around Be stars. Mon. Not. R. Astron. Soc. 1991, 250, 432–437. [Google Scholar] [CrossRef]
- Okazaki, A.T.; Negueruela, I. A natural explanation for periodic X-ray outbursts in Be/X-ray binaries. A&A 2001, 377, 161–174. [Google Scholar] [CrossRef]
- Porter, J.M. On outflowing viscous disc models for Be stars. A&A 1999, 348, 512–518. [Google Scholar]
- Bjorkman, J.E.; Cassinelli, J.P. Equatorial disk formation around rotating stars due to Ram pressure confinement by the stellar wind. Astrophys. J. 1993, 409, 429–449. [Google Scholar] [CrossRef]
- Pelupessy, I.; Lamers, H.J.G.L.M.; Vink, J.S. The radiation driven winds of rotating B[e] supergiants. A&A 2000, 359, 695–706. [Google Scholar]
- Castor, J.I.; Abbott, D.C.; Klein, R.I. Radiation-driven winds in Of stars. Astrophys. J. 1975, 195, 157–174. [Google Scholar] [CrossRef]
- Owocki, S.P.; Gayley, K.G.; Cranmer, S.R. Effects of Gravity Darkening on Radiatively Driven Mass Loss from Rapidly Rotating Stars. In Properties of Hot Luminous Stars; Howarth, I., Ed.; Astronomical Society of the Pacific: Pasadena, CA, USA, 1998; Volume 131, p. 237. [Google Scholar]
- Pauldrach, A.; Puls, J.; Kudritzki, R.P. Radiation-driven winds of hot luminous stars—Improvements of the theory and first results. Astron. Astrophys. 1986, 164, 86–100. [Google Scholar]
- Kudritzki, R.P. Line-driven Winds, Ionizing Fluxes, and Ultraviolet Spectra of Hot Stars at Extremely Low Metallicity. I. Very Massive O Stars. Astrophys. J. 2002, 577, 389–408. [Google Scholar] [CrossRef] [Green Version]
- Muijres, L.E.; Vink, J.S.; de Koter, A.; Müller, P.E.; Langer, N. Predictions for mass-loss rates and terminal wind velocities of massive O-type stars. Astron. Astrophys. 2012, 537, A37. [Google Scholar] [CrossRef]
- Landau, L.D.; Lifshitz, E.M. Fluid Mechanics; SAO/NASA Astrophysics Data System: Cambridge, MA, USA, 1987. [Google Scholar]
- Versteeg, H.K.; Malalasekera, W. An Introduction to Computational Fluid Dynamics. The Finite Volume Method; Longman Scientific and Technical: London, UK, 1995. [Google Scholar]
- Johnston, S.; Manchester, R.N.; Lyne, A.G.; D’Amico, N.; Bailes, M.; Gaensler, B.M.; Nicastro, L. Radio observations of PSR B1259-63 around periastron. Mon. Not. R. Astron. Soc. 1996, 279, 1026–1036. [Google Scholar] [CrossRef] [Green Version]
- Miller-Jones, J.C.A.; Deller, A.T.; Shannon, R.M.; Dodson, R.; Moldón, J.; Ribó, M.; Dubus, G.; Johnston, S.; Paredes, J.M.; Ransom, S.M.; et al. The geometric distance and binary orbit of PSR B1259-63. Mon. Not. R. Astron. Soc. 2018, 479, 4849–4860. [Google Scholar] [CrossRef]
- Kudritzki, R.P.; Yorke, H.W.; Frisch, H. Radiation in Moving Gaseous Media: Eighteenth Advanced Course of the Swiss Society of Astrophysics and Astronomy; Geneva Observatory: Geneva, Switzerland, 1988. [Google Scholar]
- Owocki, S.P.; Cranmer, S.R.; Blondin, J.M. Two-dimensional hydrodynamical simulations of wind-compressed disks around rapidly rotating B stars. Astrophys. J. 1994, 424, 887–904. [Google Scholar] [CrossRef]
- Lamers, H.J.G.L.M.; Cassinelli, J.P. Introduction to Stellar Winds; Cambridge University Press: Cambridge, UK, 1999; p. 452. [Google Scholar]
- Ansys, I. ANSYS CFX-Solver Thery Guide; Ansys, Inc.: Pittsburgh, PA, USA, 2006. [Google Scholar]
- Friend, D.B.; Abbott, D.C. The theory of radiatively driven stellar winds. III—Wind models with finite disk correction and rotation. Astrophys. J. 1986, 311, 701–707. [Google Scholar] [CrossRef]
- Shakura, N.I.; Sunyaev, R.A. Black holes in binary systems. Observational appearance. Astron. Astrophys. 1973, 24, 337–355. [Google Scholar]
- Blandford, R.D.; Payne, D.G. Hydromagnetic flows from accretion discs and the production of radio jets. Mon. Not. R. Astron. Soc. 1982, 199, 883–903. [Google Scholar] [CrossRef] [Green Version]
- Velikhov, E.P. Stability of an Ideally Conducting Liquid Flowing between Cylinders Rotating in a Magnetic Field. In Soviet Physics JETP; MAIK Nauka/Interperiodica: Moscow, Russia, 1959; pp. 1398–1404. [Google Scholar]
- Balbus, S.A.; Hawley, J.F. A Powerful Local Shear Instability in Weakly Magnetized Disks. I. Linear Analysis. Astrophys. J. 1991, 376, 214. [Google Scholar] [CrossRef]
- Bai, X.N.; Stone, J.M. Local Study of Accretion Disks with a Strong Vertical Magnetic Field: Magnetorotational Instability and Disk Outflow. Astrophys. J. 2013, 767, 30. [Google Scholar] [CrossRef]
- Salvesen, G.; Simon, J.B.; Armitage, P.J.; Begelman, M.C. Accretion disc dynamo activity in local simulations spanning weak-to-strong net vertical magnetic flux regimes. Mon. Not. R. Astron. Soc. 2016, 457, 857–874. [Google Scholar] [CrossRef] [Green Version]
0.88 | |
21 | |
30,000 K | |
8.1 | |
log(/) | 4.79 |
Publisher’s Note: MDPI stays neutral with regard to jurisdictional claims in published maps and institutional affiliations. |
© 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Bogovalov, S.; Petrov, M. Modeling of the Wind/Disk Outflow from Be Stars. Universe 2021, 7, 353. https://doi.org/10.3390/universe7100353
Bogovalov S, Petrov M. Modeling of the Wind/Disk Outflow from Be Stars. Universe. 2021; 7(10):353. https://doi.org/10.3390/universe7100353
Chicago/Turabian StyleBogovalov, Sergey, and Maxim Petrov. 2021. "Modeling of the Wind/Disk Outflow from Be Stars" Universe 7, no. 10: 353. https://doi.org/10.3390/universe7100353
APA StyleBogovalov, S., & Petrov, M. (2021). Modeling of the Wind/Disk Outflow from Be Stars. Universe, 7(10), 353. https://doi.org/10.3390/universe7100353