Русский

Magdalena Ridge expands the capacity of optical interferometers

381
2024-01-05 14:17:47
Посмотреть перевод

The Magdalena Ridge Observatory has purchased a second-generation off-axis beam compressor from Optical Surface, which will expand the functionality of the facility's optical interferometer.

Interferometer is a research tool that combines two or more light sources to create interference patterns that can be measured and analyzed. In astronomy, interferometers combine the light collected by multiple telescopes, allowing them to function together as a larger "virtual telescope". The light waves emitted by each telescope are combined together to make them brighter. Interferometry can provide a more detailed view of darker objects.

The mission of the Magdalena Ridge Observatory Interferometer Project is to develop a ten element imaging interferometer with a working wavelength between 0.6 and 2.4 microns and a baseline of 7.8 to 340 meters. The technical and scientific goal of interferometers is to generate images of weak and complex astronomical targets independent of the model at a resolution of over 100 times that of the Hubble Space Telescope.

Dr. Michelle Creech Eakman, a physics professor at MRO, commented: In order to minimize the diffraction effect of long-distance propagation, the original 7.5x off-axis beam compressor provided by Optical Surface was designed to allow for a reduction in the size of a 95mm star beam for final division between instruments on the telescope. Due to the excellent performance of this optical system, we decided to obtain a single source of three second-generation beam compressors from the optical surface, which provide a better field of view to help dry Involving alignment. These beam compressors will be key components in MROI as they will enable us to operate in smaller beam spaces outside the vacuum system. We hope to obtain the first batch of margins in the first half of 2024.

Dr. Aris Kouris, Sales Director of Optical Surface, added: Our beam compressor for MROI is located in the Magdalena Mountains at an altitude of 10600 feet, with significant temperature changes. This means that we need to incorporate invar element rods into the beam compressor design to improve heating stability. Our beam compressor uses high-precision off-axis mirrors, which can provide unobstructed output and efficient transmission. The beam compressor reduces the diameter of the collimated input beam to a smaller collimated output light The preferred optical tool for beams.

Source: Laser Net

Связанные рекомендации
  • Invest 13 million euros! Tongkuai opens its Southeast European headquarters in Hungary

    Recently, German company Tongkuai invested 13 million euros to open its headquarters in Southeast Europe in Hungary and jointly established a digital network demonstration factory in the Gothler Business Park. Its business focuses on machine tools for digital manufacturing and laser sales for batteries and other automotive components.Nicola Leibinger Kamm ü ller, CEO of Tongkuai, said, "It is...

    2023-09-16
    Посмотреть перевод
  • Multinational research team achieves breakthrough in diamond Raman laser oscillator

    Recently, the team led by Professor Lv Zhiwei and Professor Bai Zhenxu from Hebei University of Technology, in collaboration with Professor Richard Mildren from Macquarie University in Australia and Professor Takashige Omatsu from Chiba University in Japan, successfully achieved direct output of Raman vortex optical rotation with large wavelength extension in a diamond Raman laser oscillator. This...

    02-27
    Посмотреть перевод
  • Samsung Heavy Industries Developing a Laser High Speed Welding Robot for Liquefied Natural Gas Ships

    South Korea's Samsung Heavy Industry announced on Thursday that it has developed the first laser high-speed welding robot in the maritime field, aimed at significantly improving the construction efficiency of liquefied natural gas (LNG) transport ships.This new technology is specifically designed for rapid welding of thin film panels used in cargo compartments of liquefied natural gas transport sh...

    2023-09-22
    Посмотреть перевод
  • Laser additive manufacturing: monitoring during defect occurrence

    Researchers at the Federal Institute of Technology in Lausanne have resolved the long-standing debate surrounding laser additive manufacturing processes through a groundbreaking defect detection method.The development of laser additive manufacturing is often hindered by unexpected defects. Traditional monitoring methods, such as thermal imaging and machine learning algorithms, have shown significa...

    2023-12-06
    Посмотреть перевод
  • WVU engineers develop laser systems to protect space assets from the impact of Earth orbit debris

    The research from the University of West Virginia has been rewarded, as debris scattered in planetary orbits that pose a threat to spacecraft and satellites may be pushed away from potential collision paths by a coordinated space laser network.Hang Woon Lee, director of the Space Systems Operations Research Laboratory at the University of West Virginia, said that artificial debris dumps, including...

    2023-10-10
    Посмотреть перевод