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Near-infrared properties of classical novae: a perspective gained from Mount Abu Infrared Observatory

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arxiv 1306.0343 v1 pith:DAI3AHKA submitted 2013-06-03 astro-ph.SR

classification astro-ph.SR
keywords novaelinesclassesnear-infraredcarbonclassicalformationobservations
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We review the near-infrared properties of classical novae in the J, H and K bands at wavelengths between 1.08 to 2.4 micron. A classification system exists for the early post-outburst optical spectra of novae on the basis of the strength of group of non-hydrogen emission lines. A similar scheme for the near-infrared regime, which is not available at present, is presented here. In the optical system there are two principal classes, namely, "Fe II" and "He/N" for novae with either prominent Fe II lines or prominent "He/N" lines. There is also a small subset of the hybrid Fe IIb type. From spectroscopic observations we show the differences and similarities between these classes of novae in the near-infrared. The spectral lines common to the two principal classes arise from H, He, N and O. However, the near-IR features that separate these two classes are the numerous, and often strong, Carbon lines which are seen only in the spectra of the Fe II class of novae. The dust formation process in novae is discussed based on broad-band observations. The first-overtone carbon monoxide (CO) detections in novae are analyzed to understand the formation and evolution of this molecule in the nova ejecta and to discuss the observed 12C/13C ratio.

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Cited by 4 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. OpenAlex reports about 10 citations worldwide. Full citation record

  1. Revisiting the Classics: On the Statistics of Dust Formation in Novae

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    Most novae (50-70%) form dust, and a redward shift in V-K color of more than 2.35 magnitudes from peak is a useful indicator of dust formation.

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  3. The topology of the magnetic field in Abell 2255 out to its virial radius. Results from the LOFAR Galaxy Cluster Ultra-Deep Field

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  4. Discovery and Detailed Study of the M31 Classical Nova AT 2023tkw: Evidence for Internal Shocks

    astro-ph.HE 2024-11 conditional novelty 5.0 of 10

    The M31 nova AT 2023tkw shows four light-curve peaks with growing time gaps, interpreted as internal shocks, and likely hosts a 0.65-solar-mass white dwarf with a K III companion.

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