论文标题

4-8 GHz傅立叶域寻找银河系中心脉冲星

4-8 GHz Fourier-domain Searches for Galactic Center Pulsars

论文作者

Suresh, Akshay, Cordes, James M., Chatterjee, Shami, Gajjar, Vishal, Perez, Karen I., Siemion, Andrew P. V., Lebofsky, Matt, MacMahon, David H. E., Ng, Cherry

论文摘要

银河中心(GC)具有高度恒星密度,是无线电瞬态搜索的有希望的目标。特别是,我们银河系的中央超级黑洞(SMBH)的脉冲星的发现和时机将对重力进行严格的强场测试和SMBH特性的准确测量。我们使用Robert C. Byrd C. Byrd Green Bank望远镜在2019年8月至9月进行了多上述4-8 GHz的观测,对我们银河的内部$ \ $ \ $ \ $ 15。我们的调查构成了迄今为止进行的最敏感的4-8 GHz GC PULSAR调查,达到6.1 GHz伪劳斯度阈值$ \ $ \ $ \ $ 1 mjy kpc $^2 $ 2.5 $ \%$。我们在傅立叶域中搜索了我们的数据,以定期信号,其中包含恒定或线性变化的视线脉冲星加速度。我们报告了GC Magnet PSR J1745 $ - $ 2900的成功检测。我们的PULSAR搜索在谐波点燃功率谱中的6 $σ$检测阈值之上的新型周期性天体物理排放中产生了未检测。我们调和了我们对GC脉冲星的未检测,其对可能由毫秒脉冲星支配的可能的GC脉冲星人群的敏感性不足。另外,在密集的GC环境中与紧凑物体的紧密相遇可能会将脉冲星从GC散开。密集的中央星际培养基也可能在脉冲星上产生磁铁。

The Galactic Center (GC), with its high density of massive stars, is a promising target for radio transient searches. In particular, the discovery and timing of a pulsar orbiting the central supermassive black hole (SMBH) of our Galaxy will enable stringent strong-field tests of gravity and accurate measurements of SMBH properties. We performed multi-epoch 4-8 GHz observations of the inner $\approx$ 15 pc of our Galaxy using the Robert C. Byrd Green Bank Telescope in 2019 August-September. Our investigations constitute the most sensitive 4-8 GHz GC pulsar survey conducted to date, reaching down to a 6.1 GHz pseudo-luminosity threshold of $\approx$ 1 mJy kpc$^2$ for a pulse duty cycle of 2.5$\%$. We searched our data in the Fourier domain for periodic signals incorporating a constant or linearly changing line-of-sight pulsar acceleration. We report the successful detection of the GC magnetar PSR J1745$-$2900 in our data. Our pulsar searches yielded a non-detection of novel periodic astrophysical emissions above a 6$σ$ detection threshold in harmonic-summed power spectra. We reconcile our non-detection of GC pulsars with inadequate sensitivity to a likely GC pulsar population dominated by millisecond pulsars. Alternatively, close encounters with compact objects in the dense GC environment may scatter pulsars away from the GC. The dense central interstellar medium may also favorably produce magnetars over pulsars.

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