A Zero-Radiation Pressure Sunshade for Supporting Climate Change Mitigation
Abstract
Limiting climate change to within the 2 {\deg}C limit requires net zero emissions of CO2 by 2050. However, the window of opportunity is closing fast. Geoengineering as the intentional and large-scale manipulation of the environment and in particular the climate is increasingly discussed as a complement to ongoing mitigation efforts. As a particular geoengineering approach, space-based geoengineering blocks or dissipates a fraction of incoming sunlight via many occulting membranes, located close to the Sun-Earth Lagrange 1 point. However, the mass of the proposed sunshades, around - tons, and their associated cost render them about times more costly than terrestrial alternatives. In this article, we propose a novel sunshade concept, which is between to times lighter than the lightest existing sunshade concepts. This is achieved via a net zero-radiation pressure design, based on the use of diffractive metamaterials, removing one of the major constraints to reducing sunshade mass. The whole sunshade system has a total mass of approximately tons and its deployment requires between to annual launches during a ten-year period. The achieved cost reduction might render space-based geoengineering competitive to terrestrial geoengineering approaches.
Keywords
Cite
@article{arxiv.2112.13652,
title = {A Zero-Radiation Pressure Sunshade for Supporting Climate Change Mitigation},
author = {Olivia Borgue and Andreas M. Hein},
journal= {arXiv preprint arXiv:2112.13652},
year = {2022}
}
Comments
An error was found in equation 6 used for calculating the normal component of the radiation pressure (Fn). The calculations were performed using the wrong sign on the second term of the equation.We used a negative sign, applicable to transmissive gratings, but as we have included an aluminium coating on the back of the grating, it is no longer transmissive, and a positive sign should be used