The environment of high-energy transient host galaxies at high redshifts as observed by SHARP
SHARP 观测的高红移高能暂现源宿主星系环境
The study of transient events, such as Gamma-Ray Bursts (GRBs) and extreme Supernovae (SNe), provides a unique probe of star-forming environments in the early Universe. Traditional global host galaxy studies often fail to capture the local conditions around the progenitor, leading to potential mischaracterizations due to metallicity gradients and spatial inhomogeneities. Using high spatial resolution integral field unit (IFU) data, such as those obtained with SHARP/VESPER, allows us to spatially resolve the host galaxies and accurately determine the physical properties (metallicity, stellar age, kinematics) at the precise explosion site. Here, we review the need for near-infrared spatially-resolved observations to link progenitor properties, such as the required low metallicity for long GRBs, to their birth environments, and highlight the crucial role of instruments like SHARP in advancing high-redshift transient science, including the characterization of SNe without associated GRBs and Kilonovae hosts.
展开 ▾亮点:用高空间分辨率 IFU(SHARP/VESPER)克服传统全局宿主研究中的金属丰度梯度和空间不均匀性,能在爆发位置直接约束长 GRB 低金属丰度等前身条件;并推广到无 GRB 超新星和千新星宿主。
以往对高红移暂现源宿主星系的研究多基于整体测光/光谱,难以反映前身星诞生位置的局部金属丰度和恒星形成条件,易受星系内部金属丰度梯度与空间不均匀性影响。SHARP/VESPER 的近红外 IFU 观测使得在精确爆炸位点解析金属丰度、恒星年龄和气体运动学成为可能,从而把长 GRB 的低金属丰度要求等前身性质与真实诞生环境更可靠地连接起来。这一思路正从 GRB 宿主扩展到与 GRB 无关的极端超新星以及千新星宿主,帮助限制不同爆发机制的环境依赖。未来随着近红外 IFU 与自适应光学、更大样本和联合多波段观测发展,有望在高红移建立更精细的暂现源环境统计与物理图像。
刊出 2026-06-23 · 收录 2026-08-20