论文标题

通过多波长观测值和磁性热模拟来限制18分钟定期无线电瞬态瞬态闪光-X J162759.5-523504.3

Constraining the nature of the 18-min periodic radio transient GLEAM-X J162759.5-523504.3 via multi-wavelength observations and magneto-thermal simulations

论文作者

Rea, N., Zelati, F. Coti, Dehman, C., Hurley-Walker, N., De Martino, D., Bahramian, A., Buckley, D. A. H., Brink, J., Kawka, A., Pons, J. A., Vigano, D., Graber, V., Ronchi, M., Pardo, C., Borghese, A., Parent, E.

论文摘要

我们使用Chandra X射线观测站在2022年1月22日至23日使用Chandra X射线观测值观察到定期无线电瞬态GLEAM-X J162759.5-523504.3(GLEAM-X J1627),同时与MWA,Meerkat和AtCA的无线电观察结果同时进行。它的无线电发射和18分钟的周期性导致该来源被暂时解释为极端磁力或特殊的高度磁性白矮人。在0.3-8 keV能量范围内未检测到源,其计数速率为3x10^{ - 4}计数/s。在我们的X射线观测过程中也未检测到无线电发射。此外,我们使用档案ESO和DECAM数据以及最近的盐观察研究了GLEAM-X J1627周围的领域。许多来源都存在于GLEAM-X J1627的位置附近,但在2英寸无线电位置不确定性中只有两个来源。取决于假定的光谱分布,上限转换为L_ {x} <6.5x10^<6.5x10^{29} erg/s的X射线亮度,用于温度kt = 0.3 kt = 0.3 kt = 0.3 kt = 0.3 kt = 0.3 kt = 0.3 kt = 0.3 kt <99对于具有光子指数γ= 2的幂律(假设1.3 kpc的距离),我们对中子星的磁性 - 热模拟进行了磁性模拟。在白色矮人的情况下,核心主导的磁场或经历了快速冷却,我们可以排除大多数二进制系统,热磁带和热磁性隔离的白矮人(T> 10.000 K),而冷隔离的白色矮人仍然与我们的限制兼容。

We observed the periodic radio transient GLEAM-X J162759.5-523504.3 (GLEAM-X J1627) using the Chandra X-ray Observatory for about 30-ks on January 22-23, 2022, simultaneously with radio observations from MWA, MeerKAT and ATCA. Its radio emission and 18-min periodicity led the source to be tentatively interpreted as an extreme magnetar or a peculiar highly magnetic white dwarf. The source was not detected in the 0.3-8 keV energy range with a 3-sigma upper-limit on the count rate of 3x10^{-4} counts/s. No radio emission was detected during our X-ray observations either. Furthermore, we studied the field around GLEAM-X J1627 using archival ESO and DECam data, as well as recent SALT observations. Many sources are present close to the position of GLEAM-X J1627, but only two within the 2" radio position uncertainty. Depending on the assumed spectral distribution, the upper limits converted to an X-ray luminosity of L_{X}<6.5x10^{29} erg/s for a blackbody with temperature kT=0.3 keV, or L_{X}<9x10^{29} erg/s for a power-law with photon index Gamma = 2 (assuming a 1.3 kpc distance). Furthermore, we performed magneto-thermal simulations for neutron stars considering crust- and core-dominated field configurations. Based on our multi-band limits, we conclude that: i) in the magnetar scenario, the X-ray upper limits suggest that GLEAM-X J1627 should be older than ~1 Myr, unless it has a core-dominated magnetic field or has experienced fast-cooling; ii) in the white dwarf scenario, we can rule out most binary systems, a hot sub-dwarf and a hot magnetic isolated white dwarf (T>10.000 K), while a cold isolated white dwarf is still compatible with our limits.

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