Study of hydrated asteroids via their polarimetric properties at low phase angles

Fuente: arXiv
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Main Authors: Geem, Jooyeon, Ishiguro, Masateru, Naito, Hiroyuki, Hasegawa, Sunao, Takahashi, Jun, Bach, Yoonsoo P., Jin, Sunho, Takagi, Seiko, Ono, Tatsuharu, Kuroda, Daisuke, Sekiguchi, Tomohiko, Kuramoto, Kiyoshi, Nakamura, Tomoki, Watanabe, Makoto
Format: Preprint
Published: 2024
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author Geem, Jooyeon
Ishiguro, Masateru
Naito, Hiroyuki
Hasegawa, Sunao
Takahashi, Jun
Bach, Yoonsoo P.
Jin, Sunho
Takagi, Seiko
Ono, Tatsuharu
Kuroda, Daisuke
Sekiguchi, Tomohiko
Kuramoto, Kiyoshi
Nakamura, Tomoki
Watanabe, Makoto
author_facet Geem, Jooyeon
Ishiguro, Masateru
Naito, Hiroyuki
Hasegawa, Sunao
Takahashi, Jun
Bach, Yoonsoo P.
Jin, Sunho
Takagi, Seiko
Ono, Tatsuharu
Kuroda, Daisuke
Sekiguchi, Tomohiko
Kuramoto, Kiyoshi
Nakamura, Tomoki
Watanabe, Makoto
contents Context. Ch-type asteroids are distinctive among other dark asteroids in that they exhibit deep negative polarization branches (NPBs). Nevertheless, the physical and compositional properties that cause their polarimetric distinctiveness are less investigated. Aims. We aim to investigate the polarimetric uniqueness of Ch-type asteroids by making databases of various observational quantities (i.e., spectroscopic and photometric properties as well as polarimetric ones) of dark asteroids.Methods. We conducted an intensive polarimetric survey of 52 dark asteroids (including 31 Ch-type asteroids) in the R$_\mathrm{C}$-band to increase the size of polarimetric samples. The observed data are compiled with previous polarimetric, spectroscopic, and photometric archival data to find their correlations. Results. We find remarkable correlations between these observed quantities, particularly the depth of NPBs and their spectroscopic features associated with the hydrated minerals. The amplitude of the opposition effect in photometric properties also shows correlations with polarimetric and spectral properties. However, these observed quantities do not show noticeable correlations with the geometric albedo, thermal inertia, and diameter of asteroids. Conclusions. Based on the observational evidence, we arrive at our conclusion that the submicrometer-sized structures (fibrous or flaky puff pastry-like structures in phyllosilicates) in the regolith particles could contribute to the distinctive NPBs of hydrated asteroids.
format Preprint
id arxiv_https___arxiv_org_abs_2406_00319
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Study of hydrated asteroids via their polarimetric properties at low phase angles
Geem, Jooyeon
Ishiguro, Masateru
Naito, Hiroyuki
Hasegawa, Sunao
Takahashi, Jun
Bach, Yoonsoo P.
Jin, Sunho
Takagi, Seiko
Ono, Tatsuharu
Kuroda, Daisuke
Sekiguchi, Tomohiko
Kuramoto, Kiyoshi
Nakamura, Tomoki
Watanabe, Makoto
Earth and Planetary Astrophysics
Context. Ch-type asteroids are distinctive among other dark asteroids in that they exhibit deep negative polarization branches (NPBs). Nevertheless, the physical and compositional properties that cause their polarimetric distinctiveness are less investigated. Aims. We aim to investigate the polarimetric uniqueness of Ch-type asteroids by making databases of various observational quantities (i.e., spectroscopic and photometric properties as well as polarimetric ones) of dark asteroids.Methods. We conducted an intensive polarimetric survey of 52 dark asteroids (including 31 Ch-type asteroids) in the R$_\mathrm{C}$-band to increase the size of polarimetric samples. The observed data are compiled with previous polarimetric, spectroscopic, and photometric archival data to find their correlations. Results. We find remarkable correlations between these observed quantities, particularly the depth of NPBs and their spectroscopic features associated with the hydrated minerals. The amplitude of the opposition effect in photometric properties also shows correlations with polarimetric and spectral properties. However, these observed quantities do not show noticeable correlations with the geometric albedo, thermal inertia, and diameter of asteroids. Conclusions. Based on the observational evidence, we arrive at our conclusion that the submicrometer-sized structures (fibrous or flaky puff pastry-like structures in phyllosilicates) in the regolith particles could contribute to the distinctive NPBs of hydrated asteroids.
title Study of hydrated asteroids via their polarimetric properties at low phase angles
topic Earth and Planetary Astrophysics
url https://arxiv.org/abs/2406.00319