ATT12: The Antarctic 12-m Terahertz Telescope for Studies of Dusty Galaxies. I. Instrument Sensitivity and Science Forecasts

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Main Authors: Wakasugi, Koki, Hashimoto, Takuya, Kuno, Nario, Nagai, Yu, Nakai, Naomasa, Mawatari, Ken, Seta, Masumichi, Ishii, Shun, Honda, Shunsuke, Ito, Mana, Matsuo, Hiroshi, Nagai, Makoto, Nishimura, Yuri, Salak, Dragan, Sorai, Kazuo, Yajima, Hidenobu
Format: Preprint
Published: 2026
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author Wakasugi, Koki
Hashimoto, Takuya
Kuno, Nario
Nagai, Yu
Nakai, Naomasa
Mawatari, Ken
Seta, Masumichi
Ishii, Shun
Honda, Shunsuke
Ito, Mana
Matsuo, Hiroshi
Nagai, Makoto
Nishimura, Yuri
Salak, Dragan
Sorai, Kazuo
Yajima, Hidenobu
author_facet Wakasugi, Koki
Hashimoto, Takuya
Kuno, Nario
Nagai, Yu
Nakai, Naomasa
Mawatari, Ken
Seta, Masumichi
Ishii, Shun
Honda, Shunsuke
Ito, Mana
Matsuo, Hiroshi
Nagai, Makoto
Nishimura, Yuri
Salak, Dragan
Sorai, Kazuo
Yajima, Hidenobu
contents We present a feasibility study of the Antarctic 12m Terahertz Telescope (ATT12), a next-generation facility to be constructed at New Dome Fuji in Antarctica, designed to open up the FIR and THz windows for extragalactic astronomy. While ATT12 will enable a wide range of Galactic and extragalactic science, this paper focuses on its potential for studies of dusty star-forming galaxies (DSFGs) across cosmic time. Using realistic atmospheric transmission models and the planned instrumental specifications of heterodyne spectrometers and wide-field multi-color continuum cameras, we assess the expected sensitivity and scientific capabilities. We show that spectroscopic observations will enable detections of [CII]158um from galaxies with log(LIR/Lsun)>12 out to z~7, while [OIII]88um will remain observable for HyLIRG-class systems up to z~10. Line ratios including [OIII]52/88um, [NII]122/205um, and [OIII]/[NIII] will provide unique diagnostics of electron density and O/N abundance at z~4-8. Wide-field continuum surveys with the continuum cameras (KIDS-1/2; 300-850 GHz) will reach confusion-limited depths of ~1-2 mJy over ~10,000 deg$^2$, detecting of order $10^{6}$-$10^{7}$ DSFGs with log(LIR/Lsun)>12 at z<5 and $\lesssim10^{3}$--$10^{4}$ HyLIRGs up to z~7 or higher. Higher-frequency cameras (KIDS-3/4; >850 GHz) are designed for targeted follow-up observations and to extend coverage toward the THz regime. Taken together, ATT12 will provide the first statistically representative samples of DSFGs across cosmic time and, through synergy with ALMA, JWST, and the proposed FIR Probe PRIMA, will establish a multi-wavelength framework in which ATT12 discovers large samples through wide-area surveys, ALMA provides high-resolution follow-up of gas and ISM structure, JWST probes stellar populations and metallicity in the rest-frame optical/NIR, and PRIMA delivers ultra-sensitive FIR spectroscopy.
format Preprint
id arxiv_https___arxiv_org_abs_2603_18689
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle ATT12: The Antarctic 12-m Terahertz Telescope for Studies of Dusty Galaxies. I. Instrument Sensitivity and Science Forecasts
Wakasugi, Koki
Hashimoto, Takuya
Kuno, Nario
Nagai, Yu
Nakai, Naomasa
Mawatari, Ken
Seta, Masumichi
Ishii, Shun
Honda, Shunsuke
Ito, Mana
Matsuo, Hiroshi
Nagai, Makoto
Nishimura, Yuri
Salak, Dragan
Sorai, Kazuo
Yajima, Hidenobu
Astrophysics of Galaxies
Instrumentation and Methods for Astrophysics
We present a feasibility study of the Antarctic 12m Terahertz Telescope (ATT12), a next-generation facility to be constructed at New Dome Fuji in Antarctica, designed to open up the FIR and THz windows for extragalactic astronomy. While ATT12 will enable a wide range of Galactic and extragalactic science, this paper focuses on its potential for studies of dusty star-forming galaxies (DSFGs) across cosmic time. Using realistic atmospheric transmission models and the planned instrumental specifications of heterodyne spectrometers and wide-field multi-color continuum cameras, we assess the expected sensitivity and scientific capabilities. We show that spectroscopic observations will enable detections of [CII]158um from galaxies with log(LIR/Lsun)>12 out to z~7, while [OIII]88um will remain observable for HyLIRG-class systems up to z~10. Line ratios including [OIII]52/88um, [NII]122/205um, and [OIII]/[NIII] will provide unique diagnostics of electron density and O/N abundance at z~4-8. Wide-field continuum surveys with the continuum cameras (KIDS-1/2; 300-850 GHz) will reach confusion-limited depths of ~1-2 mJy over ~10,000 deg$^2$, detecting of order $10^{6}$-$10^{7}$ DSFGs with log(LIR/Lsun)>12 at z<5 and $\lesssim10^{3}$--$10^{4}$ HyLIRGs up to z~7 or higher. Higher-frequency cameras (KIDS-3/4; >850 GHz) are designed for targeted follow-up observations and to extend coverage toward the THz regime. Taken together, ATT12 will provide the first statistically representative samples of DSFGs across cosmic time and, through synergy with ALMA, JWST, and the proposed FIR Probe PRIMA, will establish a multi-wavelength framework in which ATT12 discovers large samples through wide-area surveys, ALMA provides high-resolution follow-up of gas and ISM structure, JWST probes stellar populations and metallicity in the rest-frame optical/NIR, and PRIMA delivers ultra-sensitive FIR spectroscopy.
title ATT12: The Antarctic 12-m Terahertz Telescope for Studies of Dusty Galaxies. I. Instrument Sensitivity and Science Forecasts
topic Astrophysics of Galaxies
Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2603.18689