Large-scale magnetic field in the accretion discs of young stars: the influence of magnetic diffusion, buoyancy and Hall effect

被引:13
作者
Khaibrakhmanov, S. A. [1 ,2 ]
Dudorov, A. E. [2 ]
Parfenov, S. Yu. [1 ]
Sobolev, A. M. [1 ]
机构
[1] Ural Fed Univ, 51 Lenin Str, Ekaterinburg 620000, Russia
[2] Chelyabinsk State Univ, 129 Br Kashirinykh Str, Chelyabinsk 454001, Russia
基金
俄罗斯科学基金会;
关键词
accretion; accretion discs; magnetic fields; MHD; polarization; radiative transfer; protoplanetary discs; PRIMITIVE SOLAR NEBULA; GLOBAL MHD SIMULATIONS; T-TAURI DISKS; PROTOPLANETARY DISCS; RADIATIVE-TRANSFER; MAGNETOROTATIONAL INSTABILITY; MAGNETOHYDRODYNAMIC SIMULATIONS; PROTOSTELLAR DISKS; VERTICAL STRUCTURE; DRIVEN ACCRETION;
D O I
10.1093/mnras/stw2349
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We investigate the fossil magnetic field in the accretion and protoplanetary discs using the Shakura and Sunyaev approach. The distinguishing feature of this study is the accurate solution of the ionization balance equations and the induction equation with Ohmic diffusion, magnetic ambipolar diffusion, buoyancy and the Hall effect. We consider the ionization by cosmic rays, X-rays and radionuclides, radiative recombinations, recombinations on dust grains and also thermal ionization. The buoyancy appears as the additional mechanism of magnetic flux escape in the steady-state solution of the induction equation. Calculations show that Ohmic diffusion and magnetic ambipolar diffusion constraint the generation of the magnetic field inside the ` dead' zones. The magnetic field in these regions is quasi-vertical. The buoyancy constraints the toroidal magnetic field strength close to the disc inner edge. As a result, the toroidal and vertical magnetic fields become comparable. The Hall effect is important in the regions close to the borders of the 'dead' zones because electrons are magnetized there. The magnetic field in these regions is quasi-radial. We calculate the magnetic field strength and geometry for the discs with accretion rates (10(-8)-10(-6)) M-circle dot yr(-1). The fossil magnetic field geometry does not change significantly during the disc evolution while the accretion rate decreases. We construct the synthetic maps of dust emission polarized due to the dust grain alignment by the magnetic field. In the polarization maps, the 'dead' zones appear as the regions with the reduced values of polarization degree in comparison to those in the adjacent regions.
引用
收藏
页码:586 / 598
页数:13
相关论文
共 85 条
[1]   Planck intermediate results. XX. Comparison of polarized thermal emission from Galactic dust with simulations of MHD turbulence [J].
Ade, P. A. R. ;
Aghanim, N. ;
Alina, D. ;
Alves, M. I. R. ;
Aniano, G. ;
Annitage-Caplan, C. ;
Arnaud, M. ;
Arzoumanian, D. ;
Ashdown, M. ;
Atrio-Barandela, F. ;
Aumont, J. ;
Baccigalupi, C. ;
Banday, A. J. ;
Barreiro, R. B. ;
Battaner, E. ;
Benabed, K. ;
Benoit-Levy, A. ;
Bernard, J. -P. ;
Bersanelli, M. ;
Bielewicz, P. ;
Bond, J. R. ;
Borrill, J. ;
Bouchet, F. R. ;
Boulanger, F. ;
Bracco, A. ;
Burigana, C. ;
Cardoso, J. -F. ;
Catalano, A. ;
Chamballu, A. ;
Chiang, H. C. ;
Christensen, P. R. ;
Colombi, S. ;
Colombo, L. P. E. ;
Combet, C. ;
Couchot, F. ;
Coulais, A. ;
Crill, B. P. ;
Curto, A. ;
Cuttaia, F. ;
Danese, L. ;
Davies, R. D. ;
Davis, R. J. ;
de Bernardis, P. ;
de Rosa, A. ;
de Zotti, G. ;
Delabrouille, J. ;
Dickinson, C. ;
Diego, J. M. ;
Donzelli, S. ;
Dore, O. .
ASTRONOMY & ASTROPHYSICS, 2015, 576
[2]  
Agapitou V, 1996, ASTROPHYS LETT COMM, V34, P363
[3]  
Alfven H., 1963, Cosmical Electrodynamics
[4]   HALL-EFFECT-CONTROLLED GAS DYNAMICS IN PROTOPLANETARY DISKS. I. WIND SOLUTIONS AT THE INNER DISK [J].
Bai, Xue-Ning .
ASTROPHYSICAL JOURNAL, 2014, 791 (02)
[5]   WIND-DRIVEN ACCRETION IN PROTOPLANETARY DISKS. II. RADIAL DEPENDENCE AND GLOBAL PICTURE [J].
Bai, Xue-Ning .
ASTROPHYSICAL JOURNAL, 2013, 772 (02)
[6]  
Balbus S. A., 2011, MAGNETOHYDRODYNAMICS, P237
[7]   A POWERFUL LOCAL SHEAR INSTABILITY IN WEAKLY MAGNETIZED DISKS .1. LINEAR-ANALYSIS [J].
BALBUS, SA ;
HAWLEY, JF .
ASTROPHYSICAL JOURNAL, 1991, 376 (01) :214-222
[8]   Linear analysis of the Hall effect in protostellar disks [J].
Balbus, SA ;
Terquem, C .
ASTROPHYSICAL JOURNAL, 2001, 552 (01) :235-247
[9]   HYDROMAGNETIC FLOWS FROM ACCRETION DISKS AND THE PRODUCTION OF RADIO JETS [J].
BLANDFORD, RD ;
PAYNE, DG .
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 1982, 199 (03) :883-903
[10]   LIME - a flexible, non-LTE line excitation and radiation transfer method for millimeter and far-infrared wavelengths [J].
Brinch, C. ;
Hogerheijde, M. R. .
ASTRONOMY & ASTROPHYSICS, 2010, 523