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Optical and near-infrared spectroscopy of Nova V2891 Cygni: evidence for shock-induced dust formation

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posted on 2024-07-02, 09:57 authored by Vipin Kumar, Mudit K Srivastava, Dipankar PK Banerjee, CE Woodward, Ulisse Munari, Aneurin Evans, Vishal Joshi, Sergio Dallaporta, Kim L Page

We present multi-epoch optical and near-infrared observations of the highly reddened, Fe ii class slow Nova V2891 Cygni. The observations span 15 months since its discovery. The initial rapid brightening from quiescence, and the presence of an ∼35-d long pre-maximum halt, is well documented. The evidence that the current outburst of V2891 Cyg has undergone several distinct episodes of mass ejection is seen through time-varying P Cygni profiles of the O i 7773 Å line. A highlight is the occurrence of a dust formation event centred around approximately +273 d, which coincides with a phase of coronal line emission. The dust mass is found to be $\sim\!{0.83{-}1.25} \times 10^{-10}\ \mathrm{M}_{\odot }$. There is strong evidence to suggest that the coronal lines are created by shock heating rather than by photoionization. The simultaneous occurrence of the dust and coronal lines (with varying velocity shifts) supports the possibility that dust formation is shock induced. Such a route for dust formation has not previously been seen in a nova, although the mechanism has been proposed for dust formation in some core-collapse supernovae. Analysis of the coronal lines indicates a gas mass and temperature of 8.35–8.42 × 10−7 M⊙ and ∼(4.8–9.1) × 105 K, respectively, and an overabundance of aluminium and silicon. A Case B analysis of the hydrogen lines yields a mass of the ionized gas of (8.60 ± 1.73) × 10−5 M⊙. The reddening and distance to the nova are estimated to be E(B − V) = 2.21 ± 0.15 and d = 5.50 kpc, respectively.

Funding

A SPECTROPHOTOMETRIC STUDY OF COMET DUST: WINDOWS INTO THE EARLY SOLAR SYSTEM

National Aeronautics and Space Administration

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History

Citation

Monthly Notices of the Royal Astronomical Society, Volume 510, Issue 3, March 2022, Pages 4265–4283

Author affiliation

College of Science & Engineering Physics & Astronomy

Version

  • VoR (Version of Record)

Published in

Monthly Notices of the Royal Astronomical Society

Volume

510

Issue

3

Pagination

4265 - 4283

Publisher

Oxford University Press (OUP)

issn

0035-8711

eissn

1365-2966

Acceptance date

2021-12-21

Copyright date

2021

Available date

2024-07-02

Language

en

Deposited by

Dr Kim Page

Deposit date

2024-07-01

Data Access Statement

The data may be made available on reasonable request. The corresponding authors may be contacted for that.

Rights Retention Statement

  • No