论文标题

磁对数,喷气形成和伽马射线爆发:梯形与地平线

Magnetic Ergostars, Jet Formation and Gamma-Ray Bursts: Ergoregions versus Horizons

论文作者

Ruiz, Milton, Tsokaros, Antonios, Shapiro, Stuart L., Nelli, Kyle C., Qunell, Sam

论文摘要

我们对动态稳定的高质量中子恒星进行了第一个完全一般的相对论,磁性水力动力学模拟,具有和不带有奇异区域,以评估奇异点对磁性发射的影响。高质量中子星是由状态的可压缩和因果方程建模的,最初由从恒星内部延伸到其外部的偶极磁场。我们发现,经过几次Alfvén时间,在Ergostar中(包含梯形区域的恒星)中的磁场线,在两种情况下,正常恒星都被紧紧缠绕成螺旋漏斗,其中物质开始向外流动。流出中的最大洛伦兹因子为$γ_l\ sim 2.5 $,而无力参数则保持在$ b^2/8πρ_0\ sillsim 10 $。这些值与高度相对论的,磁驱动的外流(喷气机)和短$γ$ - 射线突发不兼容。我们将这些结果与一个旋转黑洞的结果进行了比较,该结果被磁性的,无质量的积聚磁盘包围,该磁盘启动了真正的射流。我们的模拟表明,启动相对论喷气机的Blandford-Znajek机制只有在存在黑洞时才能运行,尽管在所有情况下的发光度都是可比的。因此,仅基于观察到的Poynting亮度的值,就无法区分磁性化的黑洞与所谓的质量间隙中的磁性高质量中子星。这些结果补充了我们先前对超大残留物的研究,并表明,在超大型状态下的正常中子星或害虫是短$γ$ ray爆发的祖细胞。

We perform the first fully general relativistic, magnetohydrodynamic simulations of dynamically stable hypermassive neutron stars with and without ergoregions to assess the impact of ergoregions on launching magnetically--driven outflows. The hypermassive neutron stars are modeled by a compressible and causal equation of state and are initially endowed with a dipolar magnetic field extending from the stellar interior into its exterior. We find that, after a few Alfvén times, magnetic field lines in the ergostar (star that contains ergoregions) and the normal star have been tightly wound in both cases into a helical funnel within which matter begins to flow outward. The maximum Lorentz factor in the outflow is $Γ_L \sim 2.5$, while the force-free parameter holds at $B^2/8πρ_0\lesssim 10$. These values are incompatible with highly relativistic, magnetically-driven outflows (jets) and short $γ$-ray bursts. We compare these results with those of a spinning black hole surrounded by a magnetized, massless accretion disk that launches a bona fide jet. Our simulations suggest that the Blandford-Znajek mechanism for launching relativistic jets only operates when a black hole is present, though the Poynting luminosity in all cases is comparable. Therefore, one cannot distinguish a magnetized, accreting black hole from a magnetized hypermassive neutron star in the so-called mass-gap based solely on the value of the observed Poynting luminosity. These results complement our previous studies of supramassive remnants and suggest that it would be challenging for either normal neutron stars or ergostars in a hypermassive state to be the progenitors of short $γ$-ray bursts.

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