Large Polarization Degree of Comet 2P/Encke Continuum Based on Spectropolarimetric Signals During Its 2017 Apparition
Y. G. Kwon, M. Ishiguro, Y. Shinnaka, T. Nakaoka, D. Kuroda, H., Hanayama, J. Takahashi, S. Baar, T. Saito, M. Kawabata, M. Uemura, T., Morokuma, K. L. Murata, Seiko Takagi, Kumiko Morihana, Takahiro Nagayama, K., Sekiguchi, K. S. Kawabata, and H. Akitaya

TL;DR
This study measures the high continuum polarization degree of comet 2P/Encke, indicating dominance of large dust particles, using spectropolarimetric observations that isolate dust from molecular emissions during its 2017 apparition.
Contribution
First spectropolarimetric analysis of comet 2P/Encke's continuum polarization, revealing unusually high polarization degrees and insights into dust particle sizes and composition.
Findings
Continuum polarization degree is 33.8% at 0.815 μm.
Estimated maximum polarization degree exceeds 40% at ~100° phase angle.
Polarization varies among molecular bands, indicating different species and quantum states.
Abstract
Spectropolarimetry is a powerful technique for investigating the physical properties of gas and solid materials in cometary comae without mutual contamination, but there have been few spectropolarimetric studies to extract each component. We attempt to derive the continuum polarization degree of comet 2P/Encke, free from influence of molecular emissions. The target is unique in that it has an orbit dynamically decoupled from Jupiter like main-belt asteroids, while ejecting gas and dust like ordinary comets. We observed the comet using the Higashi-Hiroshima Optical and Near-Infrared Camera attached to the Cassegrain focus of the 150-cm Kanata telescope on UT 2017 February 21 when the comet was at the solar phase angle of 75.7 deg. We find that the continuum polarization degree with respect to the scattering plane is 33.8+/-2.7 % at the effective wavelength of 0.815 um, which is…
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