Nederlands

Magdalena Ridge expands the capacity of optical interferometers

373
2024-01-05 14:17:47
Bekijk vertaling

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

Gerelateerde aanbevelingen
  • Micro active vortex laser

    Recently, Dong Yibo, from the Photonic Chip Research Institute of Shanghai University of Technology, published his research findings titled "Nanoprinted Diffractive Layer Integrated Vertical Cavity Surface Emitting Vortex Lasers with Scalable Topological Charge" as the first author in the internationally renowned journal Nano Letters.This achievement was jointly completed by the team of academicia...

    2023-10-24
    Bekijk vertaling
  • The construction of Hefei Advanced Light Source Project held a launch ceremony, expected to be completed and released in 5 years

    Recently, in the Future Science City of Hefei City, Anhui Province, the National Major Science and Technology Infrastructure Project and Supporting Projects of Hefei Advanced Light Source announced the start of construction, with a planned land area of approximately 656 acres. The first phase of the project is expected to be completed by September 2028.After completion, it will become an internati...

    2023-09-23
    Bekijk vertaling
  • Research progress on aerospace materials and anti ablation coatings: a review

    India B R. Dr. Jalandal Ambedkar National Institute of Technology and the Indian Institute of Technology reviewed and reported on the research progress of aerospace materials and anti ablation coatings. The related paper was published in Optics&Laser Technology under the title "Progress in aerospace materials and ablation resistant coatings: A focused review".a key:1. A comprehensive overview ...

    2024-11-21
    Bekijk vertaling
  • LiDAR solutions provider Cepton acquired by KOITO

    On July 29, 2024, Cepton, a provider of high-performance LiDAR solutions, announced the signing of the final agreement for its acquisition, making it the acquiring company's subsidiary in the United States.Image source: CeptonAccording to the agreement, the acquirer is the internationally renowned automotive lighting giant KOITO, which was established in 1915 and has a history of over a hundred ye...

    2024-08-01
    Bekijk vertaling
  • Coherent and Faraday sign a partnership to expand the manufacturing scale of high-temperature superconducting (HTS) tapes

    Recently, American photonics giant Coherent and Japan's Faraday 1867 Holdings signed a Letter of Intent (LOI), with the goal of expanding the manufacturing scale of high-temperature superconducting (HTS) tapes to be widely used in large-scale deployment of nuclear fusion reactors, while also promoting the transformation of green energy. Coherent's excimer laser is expected to be more widely used i...

    2023-10-12
    Bekijk vertaling