论文标题

用长伽马射线爆发的观察数据来限制新生磁铁的椭圆度

Constraining the ellipticity of new-born magnetar with the observational data of Long gamma-ray bursts

论文作者

Xie, Lang, Wei, Da-Ming, Wang, Yun, Jin, Zhi-Ping

论文摘要

在许多长伽马射线爆发(LGRB)中观察到的X射线平台发射通常被解释为快速旋转,高度磁化的中子恒星(毫秒)的旋转光度。如果这是真的,则磁铁可能会由于非轴对称变形或各种恒星振荡而引起的X射线平台相关的扩展引力波(GW)发射。先进的Ligo和处女座探测器已经搜索了长时间的GW瞬变已有数年了,直到现在尚未发现任何磁力的GW的证据。在这项工作中,我们试图在磁体模型的假设下寻找30 LGRB的电磁观察中GW辐射的签名。 我们利用LGRB高原的观测来限制新生磁盘的特性,包括初始旋转期$ P_0 $,DIPLOE磁场强度$ B_P $和椭圆度$ε$。我们发现磁性参数之间存在一些紧密的关系,例如$ε\ propto b_p^{1.29} $和$ b_p \ propto p_0^{1.14} $。 此外,我们通过其旋转过程得出了磁铁样品的GW应变,并发现Aligo和ET检测器可能无法检测到这些物体的GWS。对于快速旋转的磁铁($ p \ sim 1 \ mbox {ms} $,$ b \ sim10^{15} \ mbox {g} $),高级LIGO O5检测器的检测范围为$ \ sim 180 \ sy 180 \ mbox {mpc} $。检测与X射线高原相关的GW信号将是GRB中央发动机是磁铁的吸烟枪。

The X-ray plateau emission observed in many Long gamma-ray bursts (LGRBs) has been usually interpreted as the spin-down luminosity of a rapidly spinning, highly magnetized neutron star (millisecond magnetar). If this is true, then the magnetar may emit extended gravitational wave (GW) emission associated with the X-ray plateau due to non-axisymmetric deformation or various stellar oscillations. The advanced LIGO and Virgo detectors have searched for long-duration GW transients for several years, no evidence of GWs from any magnetar has been found until now. In this work, we attempt to search for signature of GW radiation in the electromagnetic observation of 30 LGRBs under the assumption of the magnetar model. We utilize the observations of the LGRB plateau to constrain the properties of the new-born magnetar, including the initial spin period $P_0$, diploe magnetic field strength $B_p$ and the ellipticity $ε$. We find that there are some tight relations between magnetar parameters, e.g., $ε\propto B_p^{1.29}$ and $B_p\propto P_0^{1.14}$. In addition, we derive the GW strain for magnetar sample via their spin-down processes, and find that the GWs from these objects may not be detectable by the aLIGO and ET detectors. For a rapidly spinning magnetar ($P\sim 1\mbox{ ms}$, $ B \sim10^{15}\mbox{ G}$), the detection horizon for advanced LIGO O5 detector is $\sim 180\mbox{ Mpc}$. The detection of such GW signal associated with the X-ray plateau would be a smoking gun that the central engine of GRB is a magnetar.

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