论文标题

高对比度成像的微电机电可变形镜开发,第1部分:微型,可飞行能力的控制电子设备

Microelectromechanical deformable mirror development for high-contrast imaging, part 1: miniaturized, flight-capable control electronics

论文作者

Bendek, Eduardo, Ruane, Garreth, Prada, Camilo Mejia, Mendillo, Christopher B., Riggs, A. J. Eldorado, Serabyn, Eugene

论文摘要

可变形的镜子(DMS)是一项关键技术,可实现具有当前和计划的地面和基于空间的望远镜以及未来的任务概念的冠状直接成像,旨在图像从天然气巨人到地球类似物的外系外行星类型。这在DMS上提出了几个要求,例如需要大量的执行器计数(> 3000),良好的表面高度分辨率(<10 pm)以及质量和体积较低的辐射硬化驾驶电子设备。我们介绍了具有飞行能力的小型DM控制器的设计和测试。在NASA的喷气推进实验室(JPL)的高对比度成像测试床设施中,在真空测试中的冠状动脉测试中达到了5x10-9的对比,我们证明了电子学能够满足未来coronagraphaph apperaphaph apperaphaph apper temonagraph apperionpaph-配备了配备的coronagraph-apporaph-agraph apter。我们还报告了在船上进行功能测试的高空气球实验“行星成像概念概念测试床位,旨在直接成像附近恒星周围的碎屑盘和外生尘。该控制器是为波士顿Micromanic Corporation Kilo-DM设计的,并且很容易扩展到较大的DM格式。该系统的三个主要组成部分(DM,驱动电子以及机械和热管理)设计为紧凑,并且具有低功率消耗,不仅可以在系外行星任务上使用,而且还可以在需要精确的光学系统的广泛应用中,例如直接的直线光线远处的Laser Laser通讯。控制器能够处理具有220 V最大动态范围,16位分辨率,14位准确性和1 kHz工作频率的1024个执行器。该系统适合10 x 10 x 5 cm3的体积,重<0.5 kg,并且消耗<8W。我们已经开发了一个交钥匙解决方案,降低了未来任务的风险。

Deformable mirrors (DMs) are a critical technology to enable coronagraphic direct imaging of exoplanets with current and planned ground - and space-based telescopes as well as future mission concepts that aim to image exoplanet types ranging from gas giants to Earth analogs. This places several requirements on the DMs such as requires a large actuator count (>3000), fine surface height resolution (<10 pm), and radiation hardened driving electronics with low mass and volume. We present the design and testing of a flight-capable, miniaturized DM controller. Having achieved contrasts on the order of 5x10-9 on a coronagraph testbed in vacuum in the high contrast imaging testbed facility at NASA's Jet Propulsion Laboratory (JPL), we demonstrate that the electronics are capable of meeting the requirements of future coronagraph-equipped space telescopes. We also report on functionality testing onboard the high-altitude balloon experiment "Planetary Imaging Concept Testbed Using a Recoverable Experiment Coronagraph," which aims to directly image debris disks and exozodiacal dust around nearby stars. The controller is designed for the Boston Micromachines Corporation Kilo-DM and is readily scalable to larger DM formats. The three main components of the system (the DM, driving electronics, and mechanical and heat management) are designed to be compact and have low-power consumption to enable its use not only on exoplanet missions, but also in a wide-range of applications that require precision optical systems, such as direct line-of-sight laser communications. The controller is capable of handling 1024 actuators with 220 V maximum dynamic range, 16-bit resolution, 14-bit accuracy, and 1 kHz operating frequency. The system fits in a 10 x 10 x 5 cm3 volume, weighs <0.5 kg, and consumes <8 W. We have developed a turnkey solution reducing the risk for future missions.

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