Search NASAโŒ• Search

NASA NTRS ยท 20100028894

MIRO Computational Model

Abstract

A computational model calculates the excitation of water rotational levels and emission-line spectra in a cometary coma with applications for the Micro-wave Instrument for Rosetta Orbiter (MIRO). MIRO is a millimeter-submillimeter spectrometer that will be used to study the nature of cometary nuclei, the physical processes of outgassing, and the formation of the head region of a comet (coma). The computational model is a means to interpret the data measured by MIRO. The model is based on the accelerated Monte Carlo method, which performs a random angular, spatial, and frequency sampling of the radiation field to calculate the local average intensity of the field. With the model, the water rotational level populations in the cometary coma and the line profiles for the emission from the water molecules as a function of cometary parameters (such as outgassing rate, gas temperature, and gas and electron density) and observation parameters (such as distance to the comet and beam width) are calculated.

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Broderick, Daniel. 2010-08-01. MIRO Computational Model. https://ntrs.nasa.gov/citations/20100028894

Cite the original work for its findings. Save a collection to share your selection of sources.