Characterization of High-polarization Stars and Blazars with DIPOL-1 at Sierra Nevada Observatory

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Main Authors: Otero-Santos, J., Piirola, V., Pedrosa, J. Escudero, Agudo, I., Morcuende, D., Sota, A., Casanova, V., Aceituno, F. J., Santos-Sanz, P.
Format: Preprint
Published: 2023
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author Otero-Santos, J.
Piirola, V.
Pedrosa, J. Escudero
Agudo, I.
Morcuende, D.
Sota, A.
Casanova, V.
Aceituno, F. J.
Santos-Sanz, P.
author_facet Otero-Santos, J.
Piirola, V.
Pedrosa, J. Escudero
Agudo, I.
Morcuende, D.
Sota, A.
Casanova, V.
Aceituno, F. J.
Santos-Sanz, P.
contents We report here the performance and first results of the new multiband optical polarimeter DIPOL-1, installed at the Sierra Nevada Observatory 90 cm T90 telescope (SNO, Granada, Spain). DIPOL-1 is equipped with a plane parallel calcite plate and $λ$/2 retarder for modulating the intensity of two perpendicularly polarized beams, and a high readout speed CMOS camera that allows for fast, time-dense coverage. We characterize the performance of this instrument through a series of tests on zero- and high-polarization standard stars. The instrumental polarization in the Nasmyth focus was well determined, with a very stable contribution of 4.0806% $\pm$ 0.0014% in the optical $R$ band. For bright high-polarization standards ($m_{R}<8$) we reach precisions $<$0.02% in polarization degree and 0.1$^{\circ}$ in polarization angle for exposures of 2$-$4 minutes. The polarization properties of these stars have been constrained, providing more recent results also about possible variability for future studies on some of the most used calibrators. Moreover, we have tested the capability of observing much fainter objects, in particular through blazar observations, where we reach a precision $<$0.5$-$0.6% and $<$0.5$^{\circ}$ for faint targets ($m_{R}\sim16.5$) with exposures of $\sim$1 hour. For brighter targets ($m_{R}\sim14.5-15$), we can aim for time-dense observations with errors $<$$0.2-0.4$% and $<$$1-1.5^{\circ}$ in 5-20 minutes. We have successfully performed a first campaign with DIPOL-1, detecting significant polarized emission of several blazars, with special attention to the highest ever polarization degree measured from blazar 3C~345 at $\sim$32%.
format Preprint
id arxiv_https___arxiv_org_abs_2312_05312
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Characterization of High-polarization Stars and Blazars with DIPOL-1 at Sierra Nevada Observatory
Otero-Santos, J.
Piirola, V.
Pedrosa, J. Escudero
Agudo, I.
Morcuende, D.
Sota, A.
Casanova, V.
Aceituno, F. J.
Santos-Sanz, P.
Instrumentation and Methods for Astrophysics
High Energy Astrophysical Phenomena
We report here the performance and first results of the new multiband optical polarimeter DIPOL-1, installed at the Sierra Nevada Observatory 90 cm T90 telescope (SNO, Granada, Spain). DIPOL-1 is equipped with a plane parallel calcite plate and $λ$/2 retarder for modulating the intensity of two perpendicularly polarized beams, and a high readout speed CMOS camera that allows for fast, time-dense coverage. We characterize the performance of this instrument through a series of tests on zero- and high-polarization standard stars. The instrumental polarization in the Nasmyth focus was well determined, with a very stable contribution of 4.0806% $\pm$ 0.0014% in the optical $R$ band. For bright high-polarization standards ($m_{R}<8$) we reach precisions $<$0.02% in polarization degree and 0.1$^{\circ}$ in polarization angle for exposures of 2$-$4 minutes. The polarization properties of these stars have been constrained, providing more recent results also about possible variability for future studies on some of the most used calibrators. Moreover, we have tested the capability of observing much fainter objects, in particular through blazar observations, where we reach a precision $<$0.5$-$0.6% and $<$0.5$^{\circ}$ for faint targets ($m_{R}\sim16.5$) with exposures of $\sim$1 hour. For brighter targets ($m_{R}\sim14.5-15$), we can aim for time-dense observations with errors $<$$0.2-0.4$% and $<$$1-1.5^{\circ}$ in 5-20 minutes. We have successfully performed a first campaign with DIPOL-1, detecting significant polarized emission of several blazars, with special attention to the highest ever polarization degree measured from blazar 3C~345 at $\sim$32%.
title Characterization of High-polarization Stars and Blazars with DIPOL-1 at Sierra Nevada Observatory
topic Instrumentation and Methods for Astrophysics
High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2312.05312