论文标题

量表积分谱仪的端到端仿真

End-to-end Simulation of the SCALES Integral Field Spectrograph

论文作者

Briesemeister, Zackery, Sallum, Steph, Skemer, Andrew, Stelter, R. Deno, Hinz, Philip, Brandt, Timothy

论文摘要

我们介绍了尺度的端到端模拟,第三代热式衍射仪有限的成像仪和为凯克设计的低/med分辨率积分光谱仪(IFS)。量表的2-5微米灵敏度可以检测和表征各种各样的系外行星,包括通过长基线天文学检测到的系外行星,宽轨道上的径向速度行星,吸收附近的恒星形成区域中的原型球星,以及周围的阳光周围的浅色行星。模拟目标是生成高保真模拟数据,以评估当前和将来的设计阶段的量表工具的科学能力。模拟过程将具有拟议观察模式的任意分辨率输入强度字段介入具有校准和元数据的原始检测器读取器IF帧的整个模拟数据集中,然后通过IFS数据减少管道将其降低,以由用户分析。

We present end-to-end simulations of SCALES, the third generation thermal-infrared diffraction limited imager and low/med-resolution integral field spectrograph (IFS) being designed for Keck. The 2-5 micron sensitivity of SCALES enables detection and characterization of a wide variety of exoplanets, including exoplanets detected through long-baseline astrometry, radial-velocity planets on wide orbits, accreting protoplanets in nearby star-forming regions, and reflected-light planets around the nearest stars. The simulation goal is to generate high-fidelity mock data to assess the scientific capabilities of the SCALES instrument at current and future design stages. The simulation processes arbitrary-resolution input intensity fields with a proposed observation pattern into an entire mock dataset of raw detector read-out lenslet-based IFS frames with calibrations and metadata, which are then reduced by the IFS data reduction pipeline to be analyzed by the user.

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