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DISCOVERY OF AN ISOLATED COMPACT OBJECT AT HIGH GALACTIC LATITUDE

机译:在高银河纬度上发现一个孤立的紧凑物体

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We report the discovery of a compact object at high Galactic latitude. The object was initially identified as a ROSAT All-Sky Survey Bright Source Catalog X-ray source, 1RXS J141256.0+792204, statistically likely to possess a high X-ray to optical flux ratio. Further observations using Swift, Gemini-North, and the Chandra X-Ray Observatory refined the source position and confirmed the absence of any optical counterpart to an X-ray to optical flux ratio of F_X(0.1-2.4 keV)/F_V > 8700 (3σ).Interpretation of 1RXSJ141256.0+792204-which we have dubbed Calvera-as a typical X-ray-dim isolated neutron star would place it at z ≈ 5.1 kpc above the Galactic disk-in the Galactic halo—implying that it either has an extreme space velocity (v_z approx> 5100 km s~(-1)) or has failed to cool according to theoretical predictions. Interpretations as a persistent anomalous X-ray pulsar or a "compact central object" present conflicts with these classes' typical properties. We conclude that the properties of Calvera are most consistent with those of a nearby (80-260 pc) radio pulsar, similar to the radio millisecond pulsars of 47 Tucanae, with further observations required to confirm this classification. If it is a millisecond pulsar, it is has an X-ray flux equal to the X-ray brightest millisecond pulsar (and so is tied for highest flux); the closest northern hemisphere millisecond pulsar; and potentially the closest known millisecond pulsar in the sky, making it an interesting target for X-ray study, a radio pulsar timing array, and LIGO.
机译:我们报告在高银河纬度发现了一个紧凑的物体。该物体最初被识别为ROSAT全天候测量明亮光源目录X射线源1RXS J141256.0 + 792204,据统计可能具有高X射线与光通量之比。使用Swift,Gemini-North和Chandra X射线天文台进行的进一步观察进一步完善了源头位置,并确认没有任何光学对应物,X射线与光通量之比F_X(0.1-2.4 keV)/ F_V> 8700( 3σ)。对1RXSJ141256.0 + 792204(我们将其称为Calvera)的解释是典型的X射线暗中子星,它将把它置于银河系晕圈中,位于银河系盘上方z≈5.1 kpc处,这意味着它要么具有极高的空速(v_z约> 5100 km s〜(-1))或根据理论预测未能冷却。作为持续异常的X射线脉冲星或“紧凑中心物体”的解释与这些类的典型属性存在冲突。我们得出的结论是,卡尔维拉的性质与附近(80-260 pc)无线电脉冲星的性质最一致,类似于47个杜卡尼的无线电毫秒脉冲星,还需要进一步观察以确认这一分类。如果它是毫秒级脉冲星,则其X射线通量等于X射线最亮的毫秒级脉冲星(因此与最高通量并列);最接近的北半球毫秒脉冲星;并且可能是天空中最接近的已知毫秒脉冲星,使其成为X射线研究,无线电脉冲星定时阵列和LIGO的有趣目标。

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