Science with a large field-of-view polarization survey: The Large Array Survey Telescope Polarization Node (LAST-P)

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Main Authors: Martins, V. Barbosa, Mitjans, N. Jordana, Garrappa, S., Franckowiak, A., Ofek, E. O., Ben-Ami, S., Borowska-Naguszewska, J., Ramazani, V. Fallah, Konno, R., Kuesters, D., Parsons, R. D., Polishook, D., Sadeh, I., Savushkin, O., Segre, E., Strotjohann, N., Weimann, S.
Format: Preprint
Published: 2026
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author Martins, V. Barbosa
Mitjans, N. Jordana
Garrappa, S.
Franckowiak, A.
Ofek, E. O.
Ben-Ami, S.
Borowska-Naguszewska, J.
Ramazani, V. Fallah
Konno, R.
Kuesters, D.
Parsons, R. D.
Polishook, D.
Sadeh, I.
Savushkin, O.
Segre, E.
Strotjohann, N.
Weimann, S.
author_facet Martins, V. Barbosa
Mitjans, N. Jordana
Garrappa, S.
Franckowiak, A.
Ofek, E. O.
Ben-Ami, S.
Borowska-Naguszewska, J.
Ramazani, V. Fallah
Konno, R.
Kuesters, D.
Parsons, R. D.
Polishook, D.
Sadeh, I.
Savushkin, O.
Segre, E.
Strotjohann, N.
Weimann, S.
contents Optical polarimetry provides information on the geometry of the emitting region, the magnetic field configuration and the properties of dust in astrophysical sources. Current state-of-the-art instruments typically have a small field of view (FoV), which poses a challenge for conducting wide surveys. We propose the construction of the Large Array Survey Telescope Polarization Node (LAST-P), a wide-field array of optical polarimeters. LAST-P is designed for high-cadence ($\lesssim 1$ day) polarization monitoring of numerous astrophysical transients, such as the early phases of gamma-ray bursts, supernovae, and novae. Furthermore, LAST-P will facilitate the creation of extensive polarization catalogs for X-ray binaries and white dwarfs, alongside a large FoV study of the interstellar medium. In survey mode, LAST-P will cover a FoV of 88.8 deg$^2$. With a 15 x 1-minute exposure, the instrument will be capable of measuring polarization of sources as faint as Gaia Bp-magnitude $\sim$20.9. The precision on the linear polarization degree (PD) will reach 0.7\%, 1.5\%, and 3.5\% for sources with magnitudes 17, 18, and 19, respectively, for a seeing of 2.7 arcsec, air mass of about 1 for observations in dark locations. We propose three distinct non-simultaneous survey strategies, among them an active galactic nuclei (AGN) strategy for long-term monitoring of $\sim$200 AGN with $<$1-day cadence. In this paper, we present the predicted sensitivity of the instrument and outline the various science cases it is designed to explore.
format Preprint
id arxiv_https___arxiv_org_abs_2601_03921
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Science with a large field-of-view polarization survey: The Large Array Survey Telescope Polarization Node (LAST-P)
Martins, V. Barbosa
Mitjans, N. Jordana
Garrappa, S.
Franckowiak, A.
Ofek, E. O.
Ben-Ami, S.
Borowska-Naguszewska, J.
Ramazani, V. Fallah
Konno, R.
Kuesters, D.
Parsons, R. D.
Polishook, D.
Sadeh, I.
Savushkin, O.
Segre, E.
Strotjohann, N.
Weimann, S.
Instrumentation and Methods for Astrophysics
High Energy Astrophysical Phenomena
Optical polarimetry provides information on the geometry of the emitting region, the magnetic field configuration and the properties of dust in astrophysical sources. Current state-of-the-art instruments typically have a small field of view (FoV), which poses a challenge for conducting wide surveys. We propose the construction of the Large Array Survey Telescope Polarization Node (LAST-P), a wide-field array of optical polarimeters. LAST-P is designed for high-cadence ($\lesssim 1$ day) polarization monitoring of numerous astrophysical transients, such as the early phases of gamma-ray bursts, supernovae, and novae. Furthermore, LAST-P will facilitate the creation of extensive polarization catalogs for X-ray binaries and white dwarfs, alongside a large FoV study of the interstellar medium. In survey mode, LAST-P will cover a FoV of 88.8 deg$^2$. With a 15 x 1-minute exposure, the instrument will be capable of measuring polarization of sources as faint as Gaia Bp-magnitude $\sim$20.9. The precision on the linear polarization degree (PD) will reach 0.7\%, 1.5\%, and 3.5\% for sources with magnitudes 17, 18, and 19, respectively, for a seeing of 2.7 arcsec, air mass of about 1 for observations in dark locations. We propose three distinct non-simultaneous survey strategies, among them an active galactic nuclei (AGN) strategy for long-term monitoring of $\sim$200 AGN with $<$1-day cadence. In this paper, we present the predicted sensitivity of the instrument and outline the various science cases it is designed to explore.
title Science with a large field-of-view polarization survey: The Large Array Survey Telescope Polarization Node (LAST-P)
topic Instrumentation and Methods for Astrophysics
High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2601.03921