论文标题
Theseus对ALP,深色光子和无菌中微子暗物质的见解
THESEUS Insights into ALP, Dark Photon and Sterile Neutrino Dark Matter
论文作者
论文摘要
通过一系列模拟观测值,我们研究了即将到来的Theseus任务上的仪器的能力,以检测Kev-Mev能量范围内衰减暗物质(DM)的特征信号。我们将研究重点放在三个经过良好研究的标准模型扩展上,托管轴突样粒子,深色光子和无菌中微子DM候选物。我们表明,由于Theseus的X和Gamma成像光谱仪(XGIS)仪器的敏感性,对暗物质参数的现有限制可以提高约300倍,具体取决于考虑的DM模型,并假设系统不确定性的含量为零。我们还表明,即使是最小水平的系统不确定性,1%的系统不确定性也会损害一到两个数量级的潜在限制。我们认为,尽管如此,TheseUS施加的限制将比现有的限制要好得多,并且可以很好地补充即将到来的Extp和Athena等任务的约束。最终,Theseus和未来任务所施加的限制将确保对DM模型的参数空间的强大而透彻的覆盖范围,从而可以检测到暗物质或显着改善相关限制。
Through a series of simulated observations, we investigate the capability of the instruments aboard the forthcoming THESEUS mission for the detection of a characteristic signal from decaying dark matter (DM) in the keV-MeV energy range. We focus our studies on three well studied Standard Model extensions hosting axion-like particle, dark photon, and sterile neutrino DM candidates. We show that, due to the sensitivity of THESEUS' X and Gamma Imaging Spectrometer (XGIS) instrument, existing constraints on dark matter parameters can be improved by a factor of up to ~300, depending on the considered DM model and assuming a zero level of systematic uncertainty. We also show that even a minimal level of systematic uncertainty of 1% can impair potential constraints by one to two orders of magnitude. We argue that nonetheless, the constraints imposed by THESEUS will be substantially better than existing ones and will well complement the constraints of upcoming missions such as eXTP and Athena. Ultimately, the limits imposed by THESEUS and future missions will ensure a robust and thorough coverage of the parameter space for decaying DM models, enabling either a detection of dark matter or a significant improvement of relevant limits.