论文标题

发光快速蓝色光学瞬变的中微子发射

Neutrino Emission from Luminous Fast Blue Optical Transients

论文作者

Guarini, Ersilia, Tamborra, Irene, Margutti, Raffaella

论文摘要

越来越多的证据表明,发光的快速蓝色光学瞬变(LFBOT)由紧凑的物体提供动力,发射了不对称和快速流出的供电,负责在紫外线,光学,红外,无线电和X射线频段中观察到的辐射。旨在解释电磁发射的旨在解释的场景包括膨胀的茧,围绕着在扩展恒星包膜中cho住的射流。另外,观察到的辐射可能是由黑洞与狼射线星的延迟合并形成的磁盘。我们在这些情况下探索了中微子的产生,即在窒息的射流中的内部冲击以及流出媒体与偶口介质(CSM)之间的相互作用。如果观察到轴上的轴,则cho住的射流对中微子通量提供了主要的贡献。有趣的是,从最接近的LFBOT AT2018COW推断出的中微子发射的ICECUBE上微子上限不包括电磁观测允许的参数空间区域。在纠正了观察宇宙中微子的爱丁顿偏见之后,我们得出的结论是,轴上cho住的射流和CSM相互作用的发射与检测到与iCecube中微子中微子观察到的两个轨道样中微子事件的兼容,这与At2018cow的巧合,以及其他被认为是大气的原点。虽然来自LFBOT的中微子发射并不构成IceCube观察到的中微子的扩散背景的大部分,但令人鼓舞的是,附近的LFBOT和即将推出的IceCube-gen2的检测前景令人鼓舞。随访中微子搜索对于揭示为这种新兴瞬态类别提供动力的机制至关重要。

Mounting evidence suggests that Luminous Fast Blue Optical Transients (LFBOTs) are powered by a compact object, launching an asymmetric and fast outflow responsible for the radiation observed in the ultraviolet, optical, infrared, radio, and X-ray bands. Proposed scenarios aiming to explain the electromagnetic emission include an inflated cocoon, surrounding a jet choked in the extended stellar envelope. In alternative, the observed radiation may arise from the disk formed by the delayed merger of a black hole with a Wolf-Rayet star. We explore the neutrino production in these scenarios, i.e. internal shocks in a choked jet and interaction between the outflow and the circumstellar medium (CSM). If observed on-axis, the choked jet provides the dominant contribution to the neutrino fluence. Intriguingly, the IceCube upper limit on the neutrino emission inferred from the closest LFBOT, AT2018cow, excludes a region of the parameter space otherwise allowed by electromagnetic observations. After correcting for the Eddington bias on the observation of cosmic neutrinos, we conclude that the emission from an on-axis choked jet and CSM interaction is compatible with the detection of two track-like neutrino events observed by the IceCube Neutrino Observatory in coincidence with AT2018cow, and otherwise considered to be of atmospheric origin. While the neutrino emission from LFBOTs does not constitute the bulk of the diffuse background of neutrinos observed by IceCube, detection prospects of nearby LFBOTs with IceCube and the upcoming IceCube-Gen2 are encouraging. Follow-up neutrino searches will be crucial for unravelling the mechanism powering this emergent transient class.

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