首页> 外文会议>Optical and Infrared Interferometry and Imaging Conference >Compact unambiguous differential path-length metrology with dispersed Fabry-Perot laser diodes for a space interferometer array
【24h】

Compact unambiguous differential path-length metrology with dispersed Fabry-Perot laser diodes for a space interferometer array

机译:具有分散的法布里 - 珀罗激光二极管的紧凑明明的差分路径测量,用于空间干涉仪阵列

获取原文

摘要

A space interferometer could reach a sensitivity and angular resolution which is unattainable on Earth due to the distortion and absorption of the atmosphere. It would enable many unique science cases, including the direct imaging and characterisation of temperate terrestrial exoplanets. This ambitious vision relies on the formation flying of individual spacecrafts, and the demonstration of precision metrology measuring positions in to better than lmm in at least 2 dimensions, and velocities in the range of nm/s. These significant technical challenges are one of the main reasons progress in space interferometry has been seriously hampered in the two last decades. To overcome this obstacle, we propose a novel metrology concept operating in two steps. The coarse positioning of the array elements is achieved through commercially demonstrated components, such as GPS, wide angle cameras and time-of-flight sensors. For the critical fine metrology, multiple longitudinal mode Fabry-Perot lasers in a central spacecraft are split and retro-reflected off each telescope bearing spacecraft. The reflected beams are then coherently combined in the central spacecraft and the resulting fringes arc spectrally dispersed. In this manner, the phase difference is measured at the different Fabry-Perot wavelengths, allowing the unambiguous differential position measurements over a couple of mm capture range. We present the concept together with a prototype system in the laboratory.
机译:由于气氛的变形和吸收,空间干涉仪可以达到敏感度和角度分辨率,这在地球上是无法实现的。它可以实现许多独特的科学案例,包括温带陆地外鼻产物的直接成像和表征。这种雄心勃勃的愿景依赖于个别航天器的形成飞行,并将精密计量测量位置的展示在至少2个维度的至少2个尺寸中优于LMM,以及NM / s范围内的速度。这些重要的技术挑战是太空干涉测量的进展之一,在过去几十年中受到严重阻碍。为了克服这个障碍,我们提出了一种以两步运行的新型计量概念。阵列元件的粗略定位是通过商业上显示的组分而实现的,例如GPS,广角摄像机和飞行时间传感器。对于临界微量计量,中央航天器中的多个纵向模式法布里 - 珀罗激光器分开并重新反映每个望远镜轴承宇宙飞船。然后,反射光束在中央航天器中相干地组合,并将所得的条纹弧分散。以这种方式,在不同的法布里 - 珀罗波长下测量相位差,允许在几个MM捕获范围内进行明确的差动位置测量。我们将该概念与实验室中的原型系统一起展示。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号