Detection of possible burst oscillation in the neutron star low-mass X-ray binary 4U 1323-62
在中子星低质量 X 射线双星 4U 1323-62 中探测到可能的暴振荡
Burst oscillations observed during thermonuclear X-ray bursts arise from asymmetric brightness patterns on the neutron star surface and provide a direct probe of the neutron star spin frequency. We present a detailed timing analysis of the neutron star low-mass X-ray binary 4U 1323-62 using 2024 observations with XMM-Newton and NuSTAR observatories. We identify nine thermonuclear X-ray bursts in the XMM-Newton/EPIC-pn data, along with eclipsing dips in the light curve. One of the XMM-Newton bursts exhibits a rare doublet structure. In addition, NuSTAR detects six bursts, four of which occur simultaneously with those observed with XMM-Newton. We identify a possible burst oscillation signal at $\sim$611.5 Hz in the XMM-Newton data. The strongest oscillation, detected during the primary burst of the doublet burst, reaches a maximum $Z_1^{2}$ power of $\sim35$. An analytical estimate accounting for the searched frequency and time intervals gives a significance of $\sim3.0σ$, whereas independent Monte Carlo simulations yield a more robust global significance of only $\sim2.4σ$. We therefore interpret the signal as a tentative detection of burst oscillation. The folded pulse profile in the 0.5-10 keV band is well described by a sinusoid, with a fractional rms amplitude of $\sim30\pm6$%. The oscillation frequency corresponds to a neutron-star spin period of $\sim$1.635 ms, suggesting that 4U 1323-62 may harbor a rapidly rotating millisecond neutron star.
展开 ▾首次在该源报告候选暴振荡信号,且出现在罕见的双峰暴中;若证实,将表明 4U 1323-62 拥有约 1.6 ms 的毫秒自旋,填补该源自旋频率测量空白。
4U 1323-62 作为周期性暴源/掩食 dipping 源最早由 van der Klis+ 1985 在 EXOSAT 观测中识别,后续 RXTE 遗留数据的均匀搜索曾报告 415 与 656 Hz 两个候选信号但未获确认 Bilous+ 2019。近期 XMM-Newton/NuSTAR 联合监测进一步刻画了其约 10 yr 暴发率调制和轨道/倾角行为 Boztepe+ 2026。本文利用 2024 年软 X 射线覆盖更好的 XMM-Newton 数据,在一次双峰暴中发现约 611.5 Hz 的低显著性候选,并通过蒙特卡洛给出保守的全局显著性约 2.4σ。未来更高时间分辨、更长连续观测和更严格试次校正有望确认或证伪该候选,并把振荡与双峰暴、热核火焰传播和表面非对称性联系起来;这也凸显了 burst oscillation 间歇性对观测灵敏度和物理触发条件的依赖,如 Watts 2012 所述。
预印本 2026-08-14 · 收录 2026-08-20