Arend Moerman

Publications

  1. DESHIMA 2.0: A 200-400 GHz Ultra-wideband Integrated Superconducting Spectrometer
    Karatsu, K.; Endo, A.; Moerman, A.; Yates, S. J. C.; Huiting, R.; Pascual Laguna, A.; Dabironezare, S.; Murugesan, V.; Thoen, D. J.; Buijtendorp, B. T.; Cray, S.; Fujita, K.; Hähnle, S.; Hanany, S.; Kawabe, R.; Kohno, K.; Marting, L. H.; Matsumura, T.; Nakatsubo, S.; Olde Scholtenhuis, L. G. G.; Oshima, T.; Rybak, M.; Steenvoorde, F.; Takaku, R.; Takekoshi, T.; Tamura, Y.; Taniguchi, A.; van der Werf, P. P.; Baselmans, J.;
    Astronomy & Astrophysics,
    Volume 712, Issue A12, pp. 1-14, Aug. 2026. DOI: 10.1051/0004-6361/202658904

  2. Galaxy observations with DESHIMA 2.0
    Brackenhoff, S.; Endo, A.; Karatsu, K.; Kohno, K.; Moerman, A.; Rybak, M.; Bakx, T.; Buijtendorp, B.; Cray, S.; Dabironezare, S.; de Keijzer, N.; Marting, L.; Nikolopoulou, R.; Olde Scholtenhuis, L.; Pascual Laguna, A.; Peters, M.; Rowland, L.; Steenvoorde, F.; Thoen, D.; Vollebregt, S.; van der Werf, P.; Wernicke, D.; Yates, S.; Baselmans, J. et al.;
    In SPIE Astronomical Telescopes + Instrumentation,
    Copenhagen, Denmark, Jul. 2026.

  3. A high efficiency filterbank using directional filters for integral field spectrometers in the millimeter/sub-millimeter band
    Marting, L. H.; Karatsu, K.; Olde Scholtenhuis, L. G. G.; Dabironezare, S. O.; Moerman, A.; Thoen, D. J.; van der Linden, T. J.; Endo, A.; Baselmans, J. J. A.;
    In SPIE Astronomical Telescopes + Instrumentation,
    Copenhagen, Denmark, Jul. 2026.

  4. Data processing and calibration pipeline for DESHIMA 2.0 observations on the ASTE telescope
    Fujita, S.; Karatsu, K.; Ikeda, S.; Taniguchi, A.; Endo, A.; Takekoshi, T.; Nishimura, Y.; Kohno, K.; Brackenhoff, S.; Moerman, A.; Yamanaka, J.; Tamura, Y.;
    In SPIE Astronomical Telescopes + Instrumentation,
    Copenhagen, Denmark, Jul. 2026.

  5. GPU-accelerated observational forecasting of superconducting (sub)millimeter integral field units with GATEAU
    Moerman, A.; Soshnin, N.; Brackenhoff, S.; Karatsu, K.; Marting, L.; de Rooij, S.; Brandl, B.; Endo, A.;
    In SPIE Astronomical Telescopes + Instrumentation,
    Copenhagen, Denmark, Jul. 2026.

  6. Wideband (sub)millimeter observations of the galaxy cluster RX J1347.5-1145 with DESHIMA 2.0
    Moerman, A.; Endo, A.; Brackenhoff, S.; Karatsu, K.; Rybak, M.; Bakx, T.; Buijtendorp, B.; Cray, S.; Dabironezare, S.; Huiting, R.; de Keijzer, N.; Marting, L.; Nikolopoulou, R.; Olde Scholtenhuis, L.; Pascual Laguna, A.; Peters, M.; Rowland, L.; Steenvoorde, F.; Thoen, D.; Thums, H.; Vollebregt, S.; van der Werf, P.; Yates, S.; Baselmans, J. et al.;
    In SPIE Astronomical Telescopes + Instrumentation,
    Copenhagen, Denmark, Jul. 2026.

  7. Development of TIFUUN: terahertz integral field units with universal nanotechnology
    Endo, A.; Bakx, T.; Baselmans, J.; Boleij, D.; Brackenhoff, S. A.; Brandl, B. R.; Calvo, M.; Dabironezare, S. O.; van der Does, H.; Karatsu, K.; Marting, L. H.; Moerman, A.; Olde Scholtenhuis, L.; Oude Essink, T.; Piek, J.; Rybak, M.; Soshnin, N. A.; Thoen, D. J.; Vollebregt, S.; Wang, L.; van der Werf, P.; Yates, S. C.; Yoshida, N.; Zhang, Silvia; et al.;
    In Proc. SPIE 14156, Millimeter, Submillimeter, and Far-Infrared Detectors and Instrumentation for Astronomy XIII,
    pp. 1415606, Aug. 2026. DOI: doi.org/10.1117/12.3102022

  8. Development of a Multi-Lens Quasi-Optical Imaging Spectrometer for Ground-Based Astronomy
    Dabironezare, S. O.; Olde Scholtenhuis, L. G. G.; Marting, L. H.; Shiino, Y. N.; Moerman, A.; Gregoor, W.; Meijneke, C.; Baselmans, J.; Endo, A.;
    In 50th International Conference on Infrared, Millimeter, and Terahertz Waves (IRMMW-THz),
    Helsinki, Finland, pp. 1-2, Aug. 17-22 2025. DOI: 10.1109/IRMMW-THz61557.2025.11319838

  9. Optimisation-based alignment of wide-band integrated superconducting spectrometers for submillimeter astronomy
    Moerman, A.; Karatsu, K.; Yates, S. J. C.; Huiting, R.; Steenvoorde, F.; Dabironezare, S. O.; Takekoshi, T.; Baselmans, J. J. A.; Brandl, B. R.; Endo, A.;
    Astronomy & Astrophysics,
    Volume 684, pp. A161, Apr. 2024. DOI: 10.1051/0004-6361/202348525

  10. Sub/millimeter-Wave Dual-Band Line Intensity Mapping Using the Terahertz Integral Field Units with Universal Nanotechnology (TIFUUN) for the Atacama Submillimeter Telescope Experiment (ASTE)
    Kohno, K.; Endo, A.; Tamura, Y.; Taniguchi, A.; Takekoshi, T.; Ikeda, S.; Yoshida, N.; Moriwaki, K.; Karatsu, K.; Baselmans, J. J. A.; Marting, L. H.; Moerman, A.; Buijtendorp, B. T.; Dabironezare, S.; Rybak, M.; Bakx, T. J. L. C.; Olde Scholtenhuis, L. G. G.; Steenvoorde, F.; Huiting, R.; Thoen, D. J.; L. Wang; A. Simionescu; Yates, S. J. C.; A. Monfardini; M. Calvo; P. P. van der Werf; Vollebregt, S. et al;
    In Proceedings SPIE, Millimeter, Submillimeter, and Far-Infrared Detectors and Instrumentation for Astronomy XII,
    Aug. 2024. DOI: doi.org/10.1117/12.3021109

  11. DESHIMA 2.0 on ASTE: commissioning and science verification of an ultra-wideband integrated superconducting spectrometer
    Endo, A.; Karatsu, K.; Rybak, M.; Bakx, T. J. L. C.; Buijtendorp, B. T.; Cray, S.; Dabironezare, S.; Marting, L.; Moerman, A.; Olde Scholtenhuis, L.; Oshima, T.; Pascual Laguna, A.; Thoen, D. J.; Vollebregt, S.; Wernicke, D.; van der Werf, P. P.; Yates, S. J. C.; Baselmans, J. J. A.; et al.;
    In Proc. SPIE PC13102, Millimeter, Submillimeter, and Far-Infrared Detectors and Instrumentation for Astronomy XII, PC131020T,
    Aug. 24 2024. DOI: 10.1117/12.3015295

  12. DESHIMA 2.0: full system evaluation of the ultra-wideband integrated superconducting spectrometer in laboratory
    Karatsu, K.; Endo, A.; Moerman, A.; Yates, S. J. C.; Huiting, R.; Pascual Laguna, A.; Dabironezare, S.; Murugesan, V.; Thoen, D. J.; Akamatsu, H.; Bakx, T. J. L. C.; Buijtendorp, B. T.; Cray, S.; Marting, L. H.; Matsumura, T.; Nakatsubo, S.; Oshima, T.; Rybak, M.; van der Werf, P. P.; Baselmans, J. J. A. et al.;
    In Proc. SPIE PC13102, Millimeter, Submillimeter, and Far-Infrared Detectors and Instrumentation for Astronomy XII,
    pp. PC1310214, Aug. 2024. DOI: 10.1117/12.3019013

  13. PyPO: a Python package for Physical Optics
    Arend Moerman; Maikel H. Gafaji; Kenichi Karatsu; Akira Endo;
    Journal of Open Source Software,
    Volume 8, Issue 88, pp. 5247, 2023. DOI: 10.21105/joss.05478

  14. Relativistic Pythagorean three-body problem
    Tjarda C. N. Boekholt; Arend Moerman; Simon F Portegies Zwart;
    Phys. Rev. D,
    Volume 104, Issue 8, pp. 083020, Oct. 2021. DOI: 10.1103/PhysRevD.104.083020

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