Highly bipolar planetary nebula Hen 2-57 and its possible symbiotic core

Abstract We present a multi-wavelength analysis of the highly bipolar object Hen 2-57 based on new optical spectroscopy from the Southern African Large Telescope (SALT), complemented by archival imaging, and long-term time-series photometry from OGLE and NEOWISE. The nebula exhibits a pronounced hourglass morphology with a symmetry axis at a position angle of 110 ± 5○ and an average lobe opening angle of ~53○. We also identify pronounced north–south brightness asymmetry, with the southern parts of lobes consistently brighter. The spectral energy distribution shows a strong mid-infrared excess that cannot be reproduced by a single-temperature blackbody, indicating the presence of a dense circumstellar dust structure, likely in the form of a disk or torus, analogous to that observed in M 2-9. Optical spectroscopy reveals a complex kinematic structure in which the central core is redshifted relative to both the eastern (55 ± 4 km s−1) and western (46 ± 3 km s−1) lobes. While standard diagnostic diagrams place the extended lobes in the planetary nebula regime, emission-line diagnostics of the central core are consistent with those of symbiotic stars. The same region also exhibits a steep Balmer decrement, indicative of significant internal dust extinction. Long-term OGLE photometry shows no evidence for coherent stellar pulsations, whereas NEOWISE photometry reveals a gradual mid-infrared fading of ~0.25 mag between 2010 and 2024. Together, these properties support a scenario in which Hen 2-57 hosts a dust-enshrouded D-type symbiotic central engine actively shaping the surrounding bipolar nebula, making it a close analogue of M 2-9.

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Publication Details

Journal
Monthly Notices of the Royal Astronomical Society
Published
2026-09-17
DOI
https://doi.org/10.1093/mnras/stag1771
Primary Topic
Stellar, planetary, and galactic studies
Type
article
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Highly bipolar planetary nebula Hen 2-57 and its possible symbiotic core

Jaroslav Merc, K Iłkiewicz, A Udalski, J Mikołajewska
Monthly Notices of the Royal Astronomical Society
Stellar, planetary, and galactic studies
article

Highly bipolar planetary nebula Hen 2-57 and its possible symbiotic core

Jaroslav Merc, K Iłkiewicz, A Udalski, J Mikołajewska
article en

Abstract

Abstract We present a multi-wavelength analysis of the highly bipolar object Hen 2-57 based on new optical spectroscopy from the Southern African Large Telescope (SALT), complemented by archival imaging, and long-term time-series photometry from OGLE and NEOWISE. The nebula exhibits a pronounced hourglass morphology with a symmetry axis at a position angle of 110 ± 5○ and an average lobe opening angle of ~53○. We also identify pronounced north–south brightness asymmetry, with the southern parts of lobes consistently brighter. The spectral energy distribution shows a strong mid-infrared excess that cannot be reproduced by a single-temperature blackbody, indicating the presence of a dense circumstellar dust structure, likely in the form of a disk or torus, analogous to that observed in M 2-9. Optical spectroscopy reveals a complex kinematic structure in which the central core is redshifted relative to both the eastern (55 ± 4 km s−1) and western (46 ± 3 km s−1) lobes. While standard diagnostic diagrams place the extended lobes in the planetary nebula regime, emission-line diagnostics of the central core are consistent with those of symbiotic stars. The same region also exhibits a steep Balmer decrement, indicative of significant internal dust extinction. Long-term OGLE photometry shows no evidence for coherent stellar pulsations, whereas NEOWISE photometry reveals a gradual mid-infrared fading of ~0.25 mag between 2010 and 2024. Together, these properties support a scenario in which Hen 2-57 hosts a dust-enshrouded D-type symbiotic central engine actively shaping the surrounding bipolar nebula, making it a close analogue of M 2-9.

Monthly Notices of the Royal Astronomical Society
Instituto de Astrofísica de Canarias (ES), Astronomical Institute of the Slovak Academy of Sciences (SK), Nicolaus Copernicus Astronomical Center (PL), Astronomical Observatory (RS), University of Warsaw (PL), Polish Academy of Sciences (PL)
Openalex Percentile: Top 11%
Stellar, planetary, and galactic studies
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