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Efficiency of ETV diagrams as diagnostic tools for long-term period variations - II. Non-conservative mass transfer, and gravitational radiation

机译:ETV图表作为长期变化的诊断工具的效率-II。非保守的传质和引力辐射

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Context. The credibility of an eclipse timing variation (ETV) diagram analysis is investigated for various manifestations of the mass transfer and gravitational radiation processes in binary systems. The monotonicity of the period variations and the morphology of the respective ETV diagrams are thoroughly explored in both the direct impact and the accretion disk mode of mass transfer, accompanied by different types of mass and angular momentum losses (through a hot-spot emission from the gainer and via the L2/L3 points). Aims. Our primary objective concerns the traceability of each physical mechanism by means of an ETV diagram analysis. Also, possible critical mass ratio values are sought for those transfer modes that involve orbital angular momentum losses strong enough to dictate the secular period changes even when highly competitive mechanisms with the opposite direction act simultaneously. Methods. The relation that governs the orbital evolution of a binary system is set to provide the exact solution for the period and the function expected to represent the subsequent eclipse timing variations. The angular momentum transport is parameterized through appropriate empirical relations, which are inferred from semi-analytical ballistic models. Then, we numerically determine the minimum temporal range over which a particular mechanism is rendered measurable, as well as the critical mass ratio values that signify monotonicity inversion in the period modulations. Results. Mass transfer rates comparable to or greater than 10-8?M⊙ yr-1 are measurable for typical noise levels of the ETV diagrams, regardless of whether the process is conservative. However, the presence of a transient disk around the more massive component defines a critical mass ratio (qcr ≈ 0.83) above which the period turns out to decrease when still in the conservative regime, rendering the measurability of the anticipated variations a much more complicated task. The effects of gravitational radiation proved to be rather undetectable, except for systems with physical characteristics that only refer to cataclysmic variables. Conclusions. The monotonicity of the period variations and the curvature of the respective ETV diagrams depend strongly on the accretion mode and the degree of conservatism of the transfer process. Unlike the hot-spot effects, the Lagrangian points L2 and L3 support very efficient routes of strong angular momentum loss. It is further shown that escape of mass via the L3 point – when the donor is the less massive component – safely provides critical mass ratios above which the period is expected to decrease, no matter how intense the process is.
机译:上下文。针对二元系统中质量转移和重力辐射过程的各种表现,研究了食时变化图(ETV)图分析的可靠性。在传质的直接冲击和吸积盘模式下,伴随着不同类型的质量和角动量损失(通过来自大气的热点发射),彻底探索了周期变化的单调性和各个ETV图的形态。增益和通过L2 / L3点)。目的我们的主要目标是通过ETV图表分析来关注每种物理机制的可追溯性。同样,对于那些涉及轨道角动量损失的传递模式,即使当具有相反方向的高度竞争机制同时起作用时,也要寻求可能的临界质量比值,这些传递模式应具有足够强的强度以决定世俗周期的变化。方法。设置了控制二元系统轨道演化的关系,以提供该周期的精确解和期望代表随后日食时序变化的函数。角动量传输是通过适当的经验关系进行参数化的,该经验关系是从半解析弹道模型推断出来的。然后,我们在数值上确定可测量特定机制的最小时间范围,以及表示周期调制中单调性反转的临界质量比值。结果。对于ETV图的典型噪声水平,可以测量等于或大于10-8?M⊙yr-1的传质速率,而不管该过程是否保守。但是,在更大质量的组件周围存在瞬态磁盘会定义一个临界质量比(qcr≈0.83),在该临界质量比之上,当仍处于保守状态时,周期会缩短,从而使预期变化的可测量性变得更加复杂。除了具有仅涉及催化变量的物理特性的系统外,重力辐射的影响被证明是不可检测的。结论。周期变化的单调性和各个ETV图的曲率在很大程度上取决于传递过程的吸积模式和保守程度。与热点效应不同,拉格朗日点L2和L3支持强角动量损失的非常有效的路径。进一步表明,当供体为质量较轻的组分时,通过L3点逃逸的质量安全地提供了临界质量比,无论过程多么激烈,该临界质量比都将缩短该周期。

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