Posted in | News | Optical Sensors

Reference Flat Mirrors for Satellite Telescope Performance Verification

Optical Surfaces Ltd. reports how its high precision reference flat mirrors are enabling testing and precise alignment of Earth observation satellite telescopes.

A large diameter mounted reference flat mirror. Image Credit: Optical Surfaces Ltd.

Today, satellite images play a major role in gathering information about the Earth’s ecosphere. This data, obtained by satellite-based optical telescopes provides valuable information about geological features, urban development, weather phenomena, and increasingly reliable prediction of crop yields, which are being impacted by the effects of climate change.

To obtain accurate information, with high spatial resolution, it is vital that these earth observation satellite telescopes undergo a rigorous process of testing and alignment before they are launched into space.Reference flat mirrors are a proven method of measuring the surface accuracy or the transmitted wavefront of optics. However, there are very few suppliers who can produce large flat mirrors with the ultra-high precision specifications required to verify the wavefront performance of an Earth observation telescope during its assembly and be used as an alignment aid.

Dr Aris Kouris, Sales Director at Optical Surfaces Ltd said “We have been producing large optical components and systems for more than 50 years and are widely accepted as one of Europe’s leading manufacturers of high-precision optics for satellite deployment and astronomical research. Our skilled staff have many years’ experiences of producing the large diameter (up to 600 mm) flat mirrors with surface accuracies of lambda / 15 at 633 nm are often required to test Earth observation satellite telescope systems”. He added “Our ISO 9001-2015 approved manufacturing workshops and test facilities are deep underground in a series of tunnels excavated in solid chalk where temperature remains constant and vibration is practically non-existent, this gives us a natural advantage when producing and testing high precision reference flat mirrors”.

For further information on high precision reference flat mirrors for performance verification and alignment of satellite telescopes please visit: https://www.optisurf.com/index.php/products/flats-and-windows/flats/  

Source: https://www.optisurf.com/

Citations

Please use one of the following formats to cite this article in your essay, paper or report:

  • APA

    Optical Surfaces Limited. (2022, July 11). Reference Flat Mirrors for Satellite Telescope Performance Verification. AZoSensors. Retrieved on April 28, 2024 from https://www.azosensors.com/news.aspx?newsID=15103.

  • MLA

    Optical Surfaces Limited. "Reference Flat Mirrors for Satellite Telescope Performance Verification". AZoSensors. 28 April 2024. <https://www.azosensors.com/news.aspx?newsID=15103>.

  • Chicago

    Optical Surfaces Limited. "Reference Flat Mirrors for Satellite Telescope Performance Verification". AZoSensors. https://www.azosensors.com/news.aspx?newsID=15103. (accessed April 28, 2024).

  • Harvard

    Optical Surfaces Limited. 2022. Reference Flat Mirrors for Satellite Telescope Performance Verification. AZoSensors, viewed 28 April 2024, https://www.azosensors.com/news.aspx?newsID=15103.

Tell Us What You Think

Do you have a review, update or anything you would like to add to this news story?

Leave your feedback
Your comment type
Submit

While we only use edited and approved content for Azthena answers, it may on occasions provide incorrect responses. Please confirm any data provided with the related suppliers or authors. We do not provide medical advice, if you search for medical information you must always consult a medical professional before acting on any information provided.

Your questions, but not your email details will be shared with OpenAI and retained for 30 days in accordance with their privacy principles.

Please do not ask questions that use sensitive or confidential information.

Read the full Terms & Conditions.