首页> 外文OA文献 >The electromagnetic counterpart of the binary neutron star merger LIGO/Virgo GW170817. I. Discovery of the optical counterpart using the Dark Energy Camera
【2h】

The electromagnetic counterpart of the binary neutron star merger LIGO/Virgo GW170817. I. Discovery of the optical counterpart using the Dark Energy Camera

机译:双星中子星合并LIGO /处女座GW170817的电磁副本。 I.使用暗能量相机发现光学对应物

摘要

We present the Dark Energy Camera (DECam) discovery of the optical counterpart of the first binary neutron star merger detected through gravitational wave emission, GW170817. Our observations commenced 10.5 hours post-merger, as soon as the localization region became accessible from Chile. We imaged 70 deg2 in the i and z bands, covering 93% of the initial integrated localization probability, to a depth necessary to identify likely optical counterparts (e.g., a kilonova). At 11.4 hours post-merger we detected a bright optical transient located 10:600 from the nucleus of NGC4993 at redshift z = 0:0098, consistent (for H0 = 70 km s-1 Mpc-1) with the distance of 40±8 Mpc reported by the LIGO Scientific Collaboration and the Virgo Collaboration (LVC). At detection the transient had magnitudes i=17.3 and z=17.4, and thus an absolute magnitude of Mi = -15.7, in the luminosity range expected for a kilonova. We identified 1,500 potential transient candidates. Applying simple selection criteria aimed at rejecting background events such as supernovae, we find the transient associated with NGC4993 as the only remaining plausible counterpart, and reject chance coincidence at the 99.5% confidence level. We therefore conclude that the optical counterpart we have identified near NGC4993 is associated with GW170817. This discovery ushers in the era of multi-messenger astronomy with gravitational waves, and demonstrates the power of DECam to identify the optical counterparts of gravitational-wave sources.
机译:我们介绍了通过引力波发射GW170817检测到的第一个双星中子星合并的光学对应物的暗能量相机(DECam)发现。一旦从智利进入本地化区域,我们的观察就在合并后10.5小时开始。我们在i和z波段成像了70度deg2,覆盖了初始整合定位概率的93%,达到了识别可能的光学对应物(例如千新星)所需的深度。在合并后的11.4小时,我们检测到一个明亮的光学瞬变,位于NGC4993核的10:600处,红移z = 0:0098,与(对于H0 = 70 km s-1 Mpc-1)一致,距离为40±8 Mpc由LIGO科学协作组织和处女座协作组织(LVC)报告。在检测到时,瞬变的大小为i = 17.3和z = 17.4,因此在一个千光新星预期的光度范围内,Mi的绝对大小为-15.7。我们确定了1,500个潜在的临时候选人。应用针对拒绝超新星等背景事件的简单选择标准,我们发现与NGC4993相关的瞬变是唯一剩下的可能的对等物,并在99.5%的置信度水平上拒绝了偶然的巧合。因此,我们得出的结论是,我们在NGC4993附近确定的光学对应物与GW170817相关。这一发现开启了具有引力波的多信使天文学时代,并证明了DECam识别引力波源的光学对应物的能力。

著录项

相似文献

  • 外文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号