Chrome Extension
WeChat Mini Program
Use on ChatGLM

An Optically Led Search for Kilonovae to Z∼0.3 with the Kilonova and Transients Program (Kntrap)

arXiv · High Energy Astrophysical Phenomena(2024)

Cited 0|Views1
Abstract
Compact binary mergers detectable in gravitational waves can be accompanied by a kilonova, an electromagnetic transient powered by radioactive decay of newly synthesised r-process elements. A few kilonova candidates have been observed during short gamma-ray burst follow-up, and one found associated with a gravitational wave detection, GW170817. However, robust kilonova candidates are yet to be found in un-triggered, wide-field optical surveys, that is, a search not requiring an initial gravitational wave or gamma-ray burst trigger. Here we present the first observing run for the Kilonova and Transients Program (KNTraP) using the Dark Energy Camera. The first KNTraP run ran for 11 nights, covering 31 fields at a nightly cadence in two filters. The program can detect transients beyond the LIGO/Virgo/KAGRA horizon, be agnostic to the merger orientation, avoid the Sun and/or Galactic plane, and produces high cadence multi-wavelength light curves. The data were processed nightly in real-time for rapid identification of transient candidates, allowing for follow-up of interesting candidates before they faded away. Three fast-rising candidates were identified in real-time, however none had the characteristics of the kilonova AT2017gfo associated with GW170817 or with the expected evolution for kilonovae from our fade-rate models. After the run, the data were reprocessed, then subjected to stringent filtering and model fitting to search for kilonovae offline. Multiple KNTraP runs (3+) are expected to detect kilonovae via this optical-only search method. No kilonovae were detected in this first KNTraP run using our selection criteria, constraining the KN rate to R < 1.8×10^5 Gpc^-3 yr^-1.
More
Translated text
PDF
Bibtex
AI Read Science
Must-Reading Tree
Example
Generate MRT to find the research sequence of this paper
Data Disclaimer
The page data are from open Internet sources, cooperative publishers and automatic analysis results through AI technology. We do not make any commitments and guarantees for the validity, accuracy, correctness, reliability, completeness and timeliness of the page data. If you have any questions, please contact us by email: report@aminer.cn
Chat Paper

要点】:本研究通过无触发式的光学搜索,探讨了利用Kilonova和Transients Program (KNTraP)在引力波探测范围之外的Kilonovae的发现可能性,首次使用暗能量相机进行观测,但未在首次运行中检测到Kilonovae。

方法】:通过暗能量相机进行11晚的观测,覆盖31个视场,使用两种滤光器,并实现高频率的多波长光变曲线监测。

实验】:KNTraP首次运行中,数据在每晚进行实时处理以快速识别变源候选者,并在之后进行严格筛选和模型拟合以搜索Kilonovae,使用的数据集为实时处理和后续处理的观测数据,结果未检测到Kilonovae,限制了Kilonovae的发生率R < 1.8×10^5 Gpc^-3 yr^-1。