NASA Logo

NTRS

NTRS - NASA Technical Reports Server

Press Enter or click the Search button to begin your search.

Back to Results
Spectral Eclipse TimingWe utilize multi-dimensional simulations of varying equatorial jet strength to predict wavelength-dependent variations in the eclipse times of gas-giant planets. A displaced hot spot introduces an asymmetry in the secondary eclipse light curve that manifests itself as a measured offset in the timing of the center of eclipse. A multiwavelength observation of secondary eclipse, one probing the timing of barycentric eclipse at short wavelengths and another probing at longer wavelengths, will reveal the longitudinal displacement of the hot spot and break the degeneracy between this effect and that associated with the asymmetry due to an eccentric orbit. The effect of time offsets was first explored in the IRAC wavebands by Williams et al. Here we improve upon their methodology, extend to a broad range of wavelengths, and demonstrate our technique on a series of multi-dimensional radiative-hydrodynamical simulations of HD 209458b with varying equatorial jet strength and hot-spot displacement. Simulations with the largest hot-spot displacement result in timing offsets of up to 100 s in the infrared. Though we utilize a particular radiative hydrodynamical model to demonstrate this effect, the technique is model independent. This technique should allow a much larger survey of hot-spot displacements with the James Webb Space Telescope than currently accessible with time-intensive phase curves, hopefully shedding light on the physical mechanisms associated with thermal energy advection in irradiated gas giants.
Document ID
20230001199
Acquisition Source
2230 Support
Document Type
Reprint (Version printed in journal)
Authors
Ian Dobbs-Dixon ORCID
(New York University Abu Dhabi Abu Dhabi, United Arab Emirates)
Eric Agol ORCID
(University of Washington Seattle, Washington, United States)
Drake Deming
(University of Maryland, College Park College Park, Maryland, United States)
Date Acquired
January 25, 2023
Publication Date
December 9, 2015
Publication Information
Publication: Astrophysical Journal
Publisher: American Astronomical Society
Volume: 815
Issue: 1
Issue Publication Date: December 10, 2015
ISSN: 0004-637X
e-ISSN: 1538-4357
Subject Category
Astrophysics
Report/Patent Number
NIHMS982586
Funding Number(s)
CONTRACT_GRANT: NNA13AA93A
CONTRACT_GRANT: NAS5-26555
CONTRACT_GRANT: NSF AST-0645416
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
Professional Review
Keywords
Hydrodynamics
Observational methods
Planet and satellite atmospheres
Individual planets and satellites
No Preview Available