Recombination of hot ionized nebulae: The old planetary nebula around V4334 Sgr (Sakurai's star)
arXiv:2209.03634 · doi:10.3847/1538-4357/ac90c4
Abstract
After becoming ionized, low-density astrophysical plasmas will begin a process of slow recombination. Models for this still have significant uncertainties. The recombination cannot normally be observed in isolation, because the ionization follows the evolutionary time scale of the ionizing source. Laboratory experiments are unable to reach the appropriate conditions because of the required very long time scales. The extended nebula around the very late helium flash (VLTP) star V4334 Sgr provides a unique laboratory for this kind of study. The sudden loss of the ionizing UV radiation after the VLTP event has allowed the nebula to recombine free from other influences. More than 290 long slit spectra taken with FORS1/2 at the ESO VLT between 2007 and 2022 are used to follow the time evolution of lines of H, He, N, S, O, Ar. Hydrogen and helium lines, representing most of the ionized mass, do not show significant changes. A small increase is seen in [N II] (+2.8 %/yr; significance 2.7 sigma), while we see a decrease in [O III] (-1.96 %/yr; 2.0 sigma). The [S II] lines show a change of +3.0 %/yr; 1.6 sigma). The lines of [S III] and of Ar III] show no significant change. For [S III], the measurement differs from the predicted decrease by 4.5 sigma. A possible explanation is that the fraction of [S IV] and higher is larger than expected. Such an effect could provide a potential solution for the sulfur anomaly in planetary nebulae.
13 pages, 8 figures, 3 tables; Accepted for Publication in ApJ
References in corpus (10)
- Radiative recombination data for modelling dynamic finite-density plasmas
- The onset of photoionization in Sakurai's Object (V4334 Sgr)
- Breaking news from the HST: The central star of the Stingray Nebula is now returning towards the AGB
- The ionization structure of multiple shell planetary nebulae: I. NGC 2438
- Sampling Molecular Gas in the Helix Planetary Nebula: Variation in HNC/HCN with UV Flux
- The cooling-down central star of the planetary nebula SwSt\,1: a late thermal pulse in a massive post-AGB star?
- The Decline and Fall of the Youngest Planetary Nebula
- New models for the rapid evolution of the central star of the Stingray Nebula
- Scattered moonlight observations with X-Shooter: Implications for the aerosol properties at Cerro Paranal and the ESO sky background model
- Current and future development of the photoionization code Cloudy