Alignment and optical verification of DESHIMA 2.0 at ASTE

Fuente: arXiv
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Main Authors: Moerman, A., Karatsu, K., Baselmans, J. J. A., Dabironezare, S. O., Fujita, S., Huiting, R., Kohno, K., Nishimura, Y., Steenvoorde, F., Takekoshi, T., Tamura, Y., Taniguchi, A., Yates, S. J. C., Brandl, B. R., Endo, A.
Format: Preprint
Published: 2025
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author Moerman, A.
Karatsu, K.
Baselmans, J. J. A.
Dabironezare, S. O.
Fujita, S.
Huiting, R.
Kohno, K.
Nishimura, Y.
Steenvoorde, F.
Takekoshi, T.
Tamura, Y.
Taniguchi, A.
Yates, S. J. C.
Brandl, B. R.
Endo, A.
author_facet Moerman, A.
Karatsu, K.
Baselmans, J. J. A.
Dabironezare, S. O.
Fujita, S.
Huiting, R.
Kohno, K.
Nishimura, Y.
Steenvoorde, F.
Takekoshi, T.
Tamura, Y.
Taniguchi, A.
Yates, S. J. C.
Brandl, B. R.
Endo, A.
contents We developed, characterized, and verified an alignment procedure for the DESHIMA 2.0 instrument, an ultra wide-band spectrometer operating between 200--400 GHz, at the ASTE telescope. To this end, we mounted the warm optics, consisting of a modified Dragonian dual reflector system, on a motor controlled hexapod. Crucial in the alignment procedure is our sky chopper, which allows fast beam switching. It has a small entrance and exit aperture coupling to (cold) sky, which creates a measurable signal with respect to the warm cabin environment. By scanning the instrument beam across the entrance aperture of the sky chopper using the hexapod, we found the hexapod configuration that produced the lowest signal on our detectors, implying the beam is coupled fully to cold sky and not the warm cabin. We first characterized the alignment procedure in the laboratory, where we used a vat containing liquid nitrogen as the cold source behind the sky chopper. Then, we applied the alignment procedure to DESHIMA 2.0 at ASTE. We found that the alignment procedure significantly improved the aperture efficiency compared to previously reported values of the aperture efficiency of DESHIMA at ASTE, which indicates the veracity of the alignment procedure.
format Preprint
id arxiv_https___arxiv_org_abs_2501_14478
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Alignment and optical verification of DESHIMA 2.0 at ASTE
Moerman, A.
Karatsu, K.
Baselmans, J. J. A.
Dabironezare, S. O.
Fujita, S.
Huiting, R.
Kohno, K.
Nishimura, Y.
Steenvoorde, F.
Takekoshi, T.
Tamura, Y.
Taniguchi, A.
Yates, S. J. C.
Brandl, B. R.
Endo, A.
Instrumentation and Methods for Astrophysics
We developed, characterized, and verified an alignment procedure for the DESHIMA 2.0 instrument, an ultra wide-band spectrometer operating between 200--400 GHz, at the ASTE telescope. To this end, we mounted the warm optics, consisting of a modified Dragonian dual reflector system, on a motor controlled hexapod. Crucial in the alignment procedure is our sky chopper, which allows fast beam switching. It has a small entrance and exit aperture coupling to (cold) sky, which creates a measurable signal with respect to the warm cabin environment. By scanning the instrument beam across the entrance aperture of the sky chopper using the hexapod, we found the hexapod configuration that produced the lowest signal on our detectors, implying the beam is coupled fully to cold sky and not the warm cabin. We first characterized the alignment procedure in the laboratory, where we used a vat containing liquid nitrogen as the cold source behind the sky chopper. Then, we applied the alignment procedure to DESHIMA 2.0 at ASTE. We found that the alignment procedure significantly improved the aperture efficiency compared to previously reported values of the aperture efficiency of DESHIMA at ASTE, which indicates the veracity of the alignment procedure.
title Alignment and optical verification of DESHIMA 2.0 at ASTE
topic Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2501.14478