【24h】

Visible Nulling Coronagraph Testbed Results

机译:可见调零日冕仪试验台结果

获取原文
获取原文并翻译 | 示例

摘要

We report on our recent laboratory results with the NASA/Goddard Space Flight Center (GSFC) Visible Nulling Coronagraph (VNC) testbed. We have experimentally achieved focal plane contrasts of 1 x 10~8 and approaching 10~9 at inner working angles of 2~* wavelength/D and 4~* wavelength/D respectively where D is the aperture diameter. The result was obtained using a broadband source with a narrowband spectral filter of width 10 nm centered on 630 nm. To date this is the deepest nulling result with a visible nulling coronagraph yet obtained. Developed also is a Null Control Breadboard (NCB) to assess and quantify MEMS based segmented deformable mirror technology and develop and assess closed-loop null sensing and control algorithm performance from both the pupil and focal planes. We have demonstrated closed-loop control at 27 Hz in the laboratory environment. Efforts are underway to first bring the contrast to > 109 necessary for the direct detection and characterization of jovian (Jupiter-like) and then to > 1010 necessary for terrestrial (Earth-like) exosolar planets. Short term advancements are expected to both broaden the spectral passband from 10 nm to 100 nm and to increase both the long-term stability to > 2 hours and the extent of the null out to a ~ 10~* wavelength / D via the use of MEMS based segmented deformable mirror technology, a coherent fiber bundle, achromatic phase shifters, all in a vacuum chamber at the GSFC VNC facility. Additionally an extreme stability textbook sized compact VNC is under development.
机译:我们使用NASA /哥达德太空飞行中心(GSFC)可见零位日冕仪(VNC)测试台报告了我们最近的实验室结果。我们通过实验获得的焦平面对比度为1 x 10〜8,并且在内部工作角分别为2〜*波长/ D和4〜*波长/ D时接近10〜9,其中D为孔径。使用具有以630 nm为中心的宽度为10 nm的窄带光谱滤光片的宽带光源获得结果。迄今为止,这是最深的清零结果,并且还具有可见的清零日冕仪。还开发了一种零控制面包板(NCB),用于评估和量化基于MEMS的分段可变形镜技术,并开发和评估来自瞳孔和焦平面的闭环零传感和控制算法性能。我们已经证明了在实验室环境中以27 Hz进行的闭环控制。正在努力将对比度直接提高到直接检测和表征木星(类似木星)所必需的> 109,然后将陆地(类似地球的)系外行星的对比度提高到> 1010。短期内的发展有望将光谱通带从10 nm扩展到100 nm,并通过使用LPS将长期稳定性增加到> 2小时,并将空位的范围增加到〜10〜*波长/D。基于MEMS的分段可变形反射镜技术,相干光纤束,消色差移相器全部位于GSFC VNC设施的真空室中。另外,正在开发一种具有极高稳定性的教科书大小的紧凑型VNC。

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