The seventh inner moon of Neptune



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  • 1.

    Smith, B.A. et al. Voyager 2 to Neptune: results of the science of imaging. Science 2461422-1449 (1989).

  • 2

    Colwell, J.E. & Esposito, L.W. Origins of the rings of Uranus and Neptune 1. Statistics on satellite disturbances. J. Geophys. Res. 9710,227 to 10,241 (1992).

  • 3

    Banfield, D. & Murray, N. A Dynamic History of Neptunian Inner Satellites. Icarus 99390-401 (1992).

  • 4

    Showalter, M.R., Pater, I., Lissauer, J.J. and French, R. S. New Neptune satellite: S / 2004 N 1. CBET 3586 (2013).

  • 5

    Jacobson, R. A. The orbits of the Neptunian satellites and the orientation of the Neptune Pole. Astron. J. 1374322-4329 (2009).

  • 6

    Jacobson, R. A. and Owen, W. M. Neptunian internal satellite orbits from Earth-based Voyager observations and the Hubble Space Telescope. Astron. J. 1281412-1417 (2004).

  • 7.

    Owen, W.M., Vaughan, R.M. and Synnott, S.P. Orbits of six new Neptune satellites. Astron. J. 1011511-1515 (1991).

  • 8

    Marchis, F. et al. Neptunian satellites observed with the Keck AO system. Taurus. A m. Astron. Soc. 36860 (2004).

  • 9

    Brozovic, M., Showalter, M. R., Jacobson, R. A., French, R.S., of Pater, I. & Lissauer, J. Orbits of the inner satellites of Neptune. In AAS Meeting / Division of Dynamic Astronomy Flight. 49, 402.01 (American Astronomical Society, 2018).

  • ten.

    Thomas, P. & Veverka, the small inner satellites of J. Neptune. J. Geophys. Res. 9619, 261-19268 (1991).

  • 11

    Karkoschka, E. Dimensions, shapes and albedos of the interior satellites of Neptune. Icarus 162, 400-407 (2003).

  • 12

    Showalter, M. R. & Hamilton, D. P. Resonant interactions and chaotic rotation of the small moons of Pluto. Nature 522, 45-49 (2015).

  • 13

    Croft, S. K. Proteus: geology, form and catastrophic disturbance. Icarus 99, 402-419 (1992).

  • 14

    Greenzweig, Y. & Lissauer, J. J. Growth rate of protoplanets. Icarus 8740-77 (1990).

  • 15

    Zhang, K. & Hamilton, D. P. Orbital resonances in the internal Neptunian system II. Resonant story of Proteus, Larissa, Galatea and Despina. Icarus 193267-282 (2008).

  • 16

    Tittemore, W. C. & Wisdom, J. Underwater Evolution of Uranium Satellites. Icarus 85394-443 (1990).

  • 17

    Krist, J. & Hook, R. Tiny Tim User Guide, v.6.3 (STScI, Baltimore, 2004); http://tinytim.stsci.edu/static/tinytim.pdf.

  • 18

    Renner, S. & Sicardy, B. Use of geometric elements in numerical simulations. Heavenly mech. Dyn. Astron. 94, 237-248 (2006).

  • 19

    Shupe, D.L. & Hook, R.N. The SIP convention for the representation of distortion in FITS image headers. ASP Conf. Ser. 347491-495 (2005).

  • 20

    Showalter, M. R. & Lissauer, J. J. The second system of Uranus shaped circle of moons: Discovery and dynamics. Science 311973-977 (2006).

  • 21

    Dressel, L. Manual of wide-field camera instruments 3, v.10.0 (STScI, Baltimore, 2018); http://www.stsci.edu/hst/wfc3/documents/handbooks/currentIHB/wfc3_cover.html.

  • 22

    Bohlin, R. C. Enhance photometric calibration of ACS CCD cameras. Astron. J. 152, 60 (2016).

  • 23

    Beers, T. C., Flynn, K. and Gebhardt, K. Measurements of the location and scale of velocities in clusters of galaxies – a robust approach Astron. J. 10032-49 (1990).

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