The Astrobiology Web · About Us · Advertising · Contact Us · Comments Tuesday, February 9, 2010    
 

The Astrobiology Web, Your Guide to the Living Universe
Home | Calendar - News - Gallery - Space Directory - Station Guide - Space Weather

Mars News | SpaceRef - Astrobiology Web - Pop-up News
STATUS REPORT
Date Released: Tuesday, May 15, 2007
Source: Mary Ann Liebert Inc.

Rainbows, Polarization, and the Search for Habitable Planets

Rainbows, Polarization, and the Search for Habitable Planets

April 2007, Vol. 7, No. 2 : 320 -332

http://www.liebertonline.com/doi/pdfplus/10.1089/ast.2006.0039

Current proposals for the characterization of extrasolar terrestrial planets rest primarily on the use of spectroscopic techniques. While spectroscopy is effective in detecting the gaseous components of a planet's atmosphere, it provides no way of detecting the presence of liquid water, the defining characteristic of a habitable planet. In this paper, I investigate the potential of an alternative technique for characterizing the atmosphere of a planet using polarization. By looking for a polarization peak at the "primary rainbow" scattering angle, it is possible to detect the presence of liquid droplets in a planet's atmosphere and constrain the nature of the liquid through its refractive index. Single scattering calculations are presented to show that a well-defined rainbow scattering peak is present over the full range of likely cloud droplet sizes and clearly distinguishes the presence of liquid droplets from solid particles such as ice or dust. Rainbow scattering has been used in the past to determine the nature of the cloud droplets in the Venus atmosphere and by the POLarization and Directionality of Earth Reflectances (POLDER) instrument to distinguish between liquid and ice clouds in the Earth atmosphere. While the presence of liquid water clouds does not guarantee the presence of water at the surface, this technique could complement spectroscopic techniques for characterizing the atmospheres of potential habitable planets. The disk-integrated rainbow peak for Earth is estimated to be at a degree of polarization of 12.7% or 15.5% for two different cloud cover scenarios. The observation of this rainbow peak is shown to be feasible with the proposed Terrestrial Planet Finder Coronograph mission in similar total integration times to those required for spectroscopic characterization.

Find educational astronomy software at Nameastarlive.com


 


News from Commercial Space Watch

- Pratt & Whitney Rocketdyne's Space Shuttle Main Engines Power Delivery of Robotic Control Station and Module

- NASA Ames Hosts Wind Tunnel Tests to Improve Semi-Trucks' Fuel Efficiency

- Spotlighting ESA's year of technology innovations

- NASA Solicitation: Mars Mission Organics Detection Instrument

- NASA Award: Recovery Act: Active Electromechanical Suspension System for Planetary Rovers

- NASA Solicitation: Science Evaluation Asessments Studies Services and Support

- NASA Solicitation: Poly-Picosatellite Orbital Deployer NPP Mission Support

- NASA Award: Recovery Act: Radiation Resistant Reconfigurable Shape Memory Rubber Space Arrays

- NASA Award: Recovery Act: Odor Control in Spacecraft Waste Management

- NASA Award: Recovery Act: Automated Hybrid Microwave Heating for Lunar Surface Solidification

- NASA Recovery Act: Self-deploying Composite Habitats

- NASA Synopsis: Industry Conference Sponsorship

- Zero Gravity Corporation Brings Sky High Adventure To Sin City With Exclusive Weightless Flight, February 27

- Boeing Prepares Last Major Piece of Hardware for International Space Station

- NASA Expendable Launch Vehicle Status Report 5 Feb 2010

- Play free bingo games and black out bingo.

-

- online bingo latest online bingo game reviews, bonuses and bingo news

-

advertisment


Home | Calendar - News - Gallery - Space Directory - Space Station Guide

SpaceRef - SpaceRef Asia - SpaceRef Canada - SpaceRef Europe - Astrobiology - Moon Today - Mars TV
Commercial Space Watch - Mars Today - Jupiter Today - Saturn Today - Space Elevator - Space Wire - Nano2Sol

Astrobiology Web Copyright © 1999-2010 SpaceRef Interactive Inc. All rights reserved. Privacy Policy