论文标题
将气体递送到巨型行星的磁盘上:积聚气体和质量积聚率的源区域的质量依赖性
Delivery of gas onto the circumplanetary disk of giant planets: Planetary-mass dependence of the source region of accreting gas and mass accretion rate
论文作者
论文摘要
气体积聚到磁盘上,积聚气体的源区域对于揭示尘埃吸收很重要,从而导致巨型行星周围形成卫星。我们对行星周围的等温气流和无粘性气流进行了局部三维高分辨率水力学模拟,以研究气体积聚带宽度和气体积聚速率对圆盘磁盘的行星质量依赖性。我们检查了与M_P = 0.05-1M_ {JUP}相对应的各种行星质量的情况,在5.2 au,其中m_ {jup}是当前的jovian质量。我们发现,对于具有M_P <0.2 M_ {JUP}的低质量状态,气体吸积带的径向宽度与M_P^{1/6}成正比,而使用M_P> 0.2M_ {JUP}的高质量制度与M_P成正比。我们发现,无论我们检查的病例,质量吸积率与圆周磁盘与山坡的比率大约为0.4。将我们的结果与从全球流体动力模拟获得的GAP模型相结合,我们将质量积聚速率的半分析公式推导到圆周磁盘上。我们发现,尽管两种情况之间,两种增值流到CPD的定性行为在两种情况下的定性行为截然不同,但我们的三维积聚率的质量依赖性与以前的二维情况相同。
Gas accretion onto the circumplanetary disks and the source region of accreting gas are important to reveal dust accretion that leads to satellite formation around giant planets. We performed local three-dimensional high-resolution hydrodynamic simulations of isothermal and inviscid gas flow around a planet to investigate planetary-mass dependence of gas accretion band width and gas accretion rate onto circumplanetary disks. We examined cases with various planetary masses corresponding to M_p=0.05-1M_{Jup} at 5.2 au, where M_{Jup} is the current Jovian mass. We found that the radial width of the gas accretion band is proportional to M_p^{1/6} for the low-mass regime with M_p < 0.2 M_{Jup} while it is proportional to M_p for the high-mass regime with M_p > 0.2M_{Jup}. We found that the ratio of the mass accretion rate onto the circumplanetary disk to that into the Hill sphere is about 0.4 regardless of planetary mass for the cases we examined. Combining our results with the gap model obtained from global hydrodynamic simulations, we derive semi-analytical formulae of mass accretion rate onto circumplanetary disks. We found that the mass dependence of our three-dimensional accretion rates is the same as the previously-obtained two-dimensional case, although the qualitative behavior of accretion flow onto the CPD is quite different between the two cases.