论文标题
部分可观测时空混沌系统的无模型预测
Preferential Accretion and Circumbinary Disk Precession in Eccentric Binary Systems
论文作者
论文摘要
我们提出了一套浸入圆形积聚磁盘(CBD)的二进制文件的高分辨率流体动力模拟。我们第一次研究了偏心$ e _ {\ rm b} $和质量比$ q _ {\ rm b} $的优先吸积率,在密集的参数空间中,发现与循环二元组相比,质量比较小的ecnaries或Binaries相比,质量含量较小(0. 0.0)。 e _ {\ rm b} \ Lessim 0.4 $)和高偏心($ e _ {\ rm b} \ gtrsim 0.6 $)抑制质量比增长。我们建议这种非单调的优先积分行为可能会导致恒星二进制和巨大黑洞二进制的质量比分布的可观察到可观察到的变化。我们进一步发现,根据偏心率和质量比,可以将CBD的响应分为三个方案:(i)圆形二进制文件周围的CBD始终自由预言,而偏心二进制文件周围的CBD(II)(ii)在强制性预测或(III)中仍然锁定了相对于生物periapsis的角度锁定的。偏心二进制文件的强迫进动与对进动时间尺度上的个体积聚率的强烈调节有关,这是一种可能可观察到的签名,在轨道时期内积聚二进制物。我们为我们的仿真套件提供CBD锁定角度和进动率作为$ e _ {\ rm b} $的函数和$ q _ {\ rm b} $的函数。
We present a suite of high resolution hydrodynamic simulations of binaries immersed in circumbinary accretion disks (CBDs). For the first time, we investigate the preferential accretion rate as a function of both eccentricity $e_{\rm b}$ and mass ratio $q_{\rm b}$ in a densely sampled parameter space, finding that when compared with circular binaries, mass ratios grow more efficiently in binaries on moderately eccentric orbits ($0.0 \lesssim e_{\rm b} \lesssim 0.4$), and high eccentricities ($e_{\rm b} \gtrsim 0.6 $) suppress mass ratio growth. We suggest that this non-monotonic preferential accretion behaviour may produce an observable shift in the mass ratio distributions of stellar binaries and massive black hole binaries. We further find that the response of a CBD can be divided into three regimes, depending on eccentricity and mass ratio: (i) CBDs around circular binaries always precess freely, whereas CBDs around eccentric binaries either (ii) undergo forced precession or (iii) remain locked at an angle with respect to the binary periapsis. Forced precession in eccentric binaries is associated with strong modulation of individual accretion rates on the precession timescale, a potentially observable signature in accreting binaries with short orbital periods. We provide CBD locking angles and precession rates as a function of $e_{\rm b}$ and $q_{\rm b}$ for our simulation suite.