论文标题

高空间分辨率光谱成像方法用于空间干涉仪及其在形成小卫星中的应用

High spatial resolution spectral imaging method for space interferometers and its application to formation-flying small satellites

论文作者

Matsuo, Taro, Ikari, Satoshi, Kondo, Hirotaka, Ishiwata, Sho, Nakasuka, Shinichi, Yamamuro, Tomoyasu

论文摘要

红外空间干涉仪可以超过单次空间望远镜的空间分辨率限制。但是,由于技术困难,未意识到来自空间的恒星干涉仪。来自单个卫星的两个光束分隔了几十米以上,应精确干扰,以便在波长水平下降低了两个梁之间的光学路径和角差。本文中,我们为空间干涉仪提出了一种新型的梁组合仪,该组合仪使用致密的瞳孔光谱技术记录了频谱分辨的干涉率边缘。由于检测器平面在两个梁干扰的平面上被光学共轭,因此我们可以直接测量两个梁之间的相对相位差。此外,当以适度的信号噪声比获得视野内的对象时,我们可以从连续的宽带条纹(即一个暴露测量值)中提取真正的复杂幅度,而无需扫描延迟线并切碎干涉测量法。我们发现,通过使用小恒星干涉仪模拟欧罗巴的反射光,可以验证这种光谱成像方法用于观察太阳系对象。但是,由于对象谱的结构可能会在测量中导致系统误差,因此该方法在为其他天文对象提取真正的复杂幅度时可能受到限制。将这种光谱成像方法应用于一般天体物理学将有助于进一步研究。光束组合仪和光谱成像方法被应用于在太阳同步轨道中具有多个小卫星的形成恒星干涉仪,以观察可见和近红外的太阳系对象。我们提供了Seirios的概述和针对有限体积航天器的优化光学设计。

Infrared space interferometers can surpass the spatial resolution limitations of single-dish space telescopes. However, stellar interferometers from space have not been realized because of technical difficulties. Two beams coming from individual satellites separated by more than a few tens of meters should precisely interfere such that the optical-path and angular differences between the two beams are reduced at the wavelength level. Herein, we propose a novel beam combiner for space interferometers that records the spectrally-resolved interferometric fringes using the densified pupil spectroscopic technique. As the detector plane is optically conjugated to a plane, on which the two beams interfere, we can directly measure the relative phase difference between the two beams. Additionally, when an object within the field of view is obtained with a modest signal-to-noise ratio, we can extract the true complex amplitude from a continuous broadband fringe (i.e., one exposure measurement), without scanning a delay line and chopping interferometry. We discovered that this spectral imaging method is validated for observing the solar system objects by simulating the reflected light from Europa with a small stellar interferometer. However, because the structure of the object spectrum may cause a systematic error in the measurement, this method may be limited in extracting the true complex amplitude for other astronomical objects. Applying this spectral imaging method to general astrophysics will facilitate further research. The beam combiner and spectral imaging method are applied to a formation-flying stellar interferometer with multiple small satellites in a Sun-synchronous orbit for observation of the solar system objects in visible and near-infrared. We present an overview of SEIRIOS and the optimized optical design for a limited-volume spacecraft.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源