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Updated Spin and Orbital Parameters and Energy Dependent Pulse Behaviors of the Accreting Millisecond X-Ray Pulsar IGR J17591–2342

机译:更新的旋转和轨道参数和增强毫秒X射线Pulsar IGR J17591-2342的旋转和轨道参数和能量相关脉冲行为

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We present our work in updating the spin and orbital parameters for the newly discovered accreting millisecond X-ray pulsar (AMXP) IGR J17591–2342 through pulsar timing and analyzing its energy dependent pulse behaviors. The data being analyzed were collected by Neutron Star Interior Composition ExploreR, which observed this AMXP from 2018 August to October. Using the pulse arrival time delay technique, more accurate spin and orbital parameters were evaluated. From the measured spin frequency derivative, it is estimated that the magnetic field of the neutron star in IGR J17591–2342 is approximately 4?×?10~(8) G. Precise pulse profiles can be made using the updated spin and orbital parameters. The soft phase lag phenomenon that is usually seen in other AMXPs is also observed from ~4 to 12 keV with a value of 0.06 cycles (1.14 μ s). Additionally, the pulsed fractional amplitude increases from 1 to ~5 keV and then decreases for higher energy bands. We found that these phenomena, as well as the energy spectrum, can be explained by the two-component model with a relatively strong blackbody component and an additional unpulsed disk blackbody component.
机译:我们在更新新发现的增强毫秒X射线Pulsar(AMXP)IGr J17591-2342的旋转和轨道参数时,通过脉冲条时序和分析其能量依赖性脉冲行为来展示我们的工作。正在分析的数据由中子星形内部成分探索器收集,从2018年8月至10月观察到这项AMXP。使用脉冲到达时间延迟技术,评估更准确的旋转和轨道参数。从测量的旋转频率衍生物,估计IGRJ17591-2342中的中子星的磁场约为4?×10〜(8)G.可以使用更新的旋转和轨道参数进行精确的脉冲分布。通常在其他AMXPS中看到的软相滞后现象也从〜4至12keV观察到,值为0.06个循环(1.14μs)。另外,脉冲分数幅度从1到〜〜5kev增加,然后减小更高的能量带。我们发现这些现象以及能谱可以通过具有相对强烈的黑体组件和另外的未乳液黑体组分的双组分模型来解释。

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