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Remarkable Chemical Complexity in Planetary Nebulae: A Molecule and Dust Perspective

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AbstractDespite model predictions, many planetary nebulae appear to have a relatively rich molecular content. Observational studies of over 30 such objects show the presence of a variety of gas-phase molecules, from simple species such as CN and CS, to more complex organics including H2CO, HC3N, c-C3H2, and CH3CN. Other PNe contain fullerenes; carbonaceous and silicate dust features are also found. Molecular abundances also do not appear to vary with nebular age. Remnant material from the asymptotic giant branch appears to undergo chemical processing in the protoplanetary nebula phase and then is frozen out in planetary nebulae. PN ejecta are thus in part molecular in content and may account for the observation of complex molecules in diffuse clouds.
Title: Remarkable Chemical Complexity in Planetary Nebulae: A Molecule and Dust Perspective
Description:
AbstractDespite model predictions, many planetary nebulae appear to have a relatively rich molecular content.
Observational studies of over 30 such objects show the presence of a variety of gas-phase molecules, from simple species such as CN and CS, to more complex organics including H2CO, HC3N, c-C3H2, and CH3CN.
Other PNe contain fullerenes; carbonaceous and silicate dust features are also found.
Molecular abundances also do not appear to vary with nebular age.
Remnant material from the asymptotic giant branch appears to undergo chemical processing in the protoplanetary nebula phase and then is frozen out in planetary nebulae.
PN ejecta are thus in part molecular in content and may account for the observation of complex molecules in diffuse clouds.

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