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Spectral determination of the colour and vertical structure of dark spots in Neptune’s atmosphere

  • Patrick G.J. Irwin
  • , Jack Dobinson
  • , Arjuna James
  • , Michael H. Wong
  • , Leigh N. Fletcher
  • , Michael T. Roman
  • , Nicholas A. Teanby
  • , Daniel Toledo
  • , Glenn S. Orton
  • , Santiago Pérez-Hoyos
  • , Agustin Sánchez-Lavega
  • , Lawrence Sromovsky
  • , Amy A. Simon
  • , Raúl Morales-Juberías
  • , Imke de Pater
  • , Statia L. Cook

Research output: Contribution to journalArticlepeer-review

9 Scopus citations

Abstract

Previous observations of dark vortices in Neptune’s atmosphere, such as Voyager 2’s Great Dark Spot (1989), have been made in only a few broad-wavelength channels, hampering efforts to determine these vortices’ pressure levels and darkening processes. We analyse spectroscopic observations of a dark spot on Neptune identified by the Hubble Space Telescope as NDS-2018; the spectral observations were made in 2019 by the Multi Unit Spectroscopic Explorer (MUSE) of the Very Large Telescope (Chile). The MUSE medium-resolution 475–933 nm reflection spectra allow us to show that dark spots are caused by darkening at short wavelengths (<700 nm) of a deep ~5 bar aerosol layer, which we suggest is the H2S condensation layer. A deep bright spot, named DBS-2019, is also visible on the edge of NDS-2018, with a spectral signature consistent with a brightening of the same 5 bar layer at longer wavelengths (>700 nm). This bright feature is much deeper than previously studied dark-spot companion clouds and may be connected with the circulation that generates and sustains such spots.

Original languageEnglish
Pages (from-to)1198-1207
Number of pages10
JournalNature Astronomy
Volume7
Issue number10
DOIs
StatePublished - Oct 2023
Externally publishedYes

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