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Optical Tolerance Analysis of the Multi-Beam Limb Viewing Instrument STEAMR

Arvid Hammar (Institutionen för mikroteknologi och nanovetenskap, Terahertz- och millimetervågsteknik ) ; Mark Whale (Institutionen för rymd- och geovetenskap, Avancerad mottagarutveckling) ; Per Forsberg ; Axel Murk ; Anders Emrich (GigaHertz Centrum) ; Jan Stake (Institutionen för mikroteknologi och nanovetenskap, Terahertz- och millimetervågsteknik )
IEEE Transactions on Terahertz Science and Technology (2156-342X). Vol. 4 (2014), 6, p. 714-721.
[Artikel, refereegranskad vetenskaplig]

We report on an optical tolerance analysis of the submillimeter atmospheric multi-beam limb sounder STEAMR. Physical optics and ray-tracing methods were used to quantify and separate errors in beam pointing and distortion due to reflector misalignment and primary reflector surface deforma-tions. Simulations were performed concurrently with the man-ufacturing of a multi-beam demonstrator of the relay optical system which shapes and images the beams to their corresponding receiver feed horns. Results from Monte-Carlo simulations show that the inserts used for reflector mounting should be positioned with an overall accuracy better than 100 µm (~1/10 wavelength). Analyses of primary reflector surface deformations show that a deviation of magnitude 100 µm can be tolerable before deployment, whereas the corresponding variations should be less than 30 µm during operation. The most sensitive optical elements in terms of misalignments are found near the focal plane. This localized sensitivity is attributed to the off-axis nature of the beams at this location. Post-assembly mechanical measurements of the reflectors in the demonstrator show that alignment better than 50 µm could be obtained.

Nyckelord: STEAMR, tolerance analysis, quasi-optics, multi-beam, Monte-Carlo, limb viewing, submillimeter wave instruments

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Denna post skapades 2014-10-13. Senast ändrad 2015-07-28.
CPL Pubid: 204171


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