Amanote Research

Amanote Research

    RegisterSign In

Averaging Bias Correction for the Future Space-Borne Methane IPDA Lidar Mission MERLIN

doi 10.5194/amt-2018-9
Full Text
Open PDF
Abstract

Available in full text

Date

March 20, 2018

Authors
Yoann TellierClémence PierangeloMartin WirthFabien GibertFabien Marnas
Publisher

Copernicus GmbH


Related search

The Absolute Frequency Reference Unit for the Methane-Sensing Lidar Mission Merlin

2017English

Sensitivity Studies for a Space-Based Methane Lidar Mission

Atmospheric Measurement Techniques
Atmospheric Science
2011English

Flight Design of the Absolute Frequency Reference Unit for the Methane-Sensing LIDAR Mission MERLIN

2019English

Lidar Uncertainty and Beam Averaging Correction

Advances in Science and Research
2015English

2-Μm Pulsed Holmium Laser for a Future CO2/ H2O Space Lidar Mission

2019English

Application of Multiple-Scattering Polarization Lidar for the Evaluation of Space-Borne Lidar Algorithms

EPJ Web of Conferences
AstronomyPhysics
2018English

The Challenges of Measuring Methane From Space With a Lidar

2019English

Characterization of Methane Retrievals From the IASI Space-Borne Sounder

Atmospheric Chemistry and Physics Discussions
Atmospheric SciencePlanetary ScienceSpace
2009English

Aerosol Products From the Future Space Lidar AEOLUS

EPJ Web of Conferences
AstronomyPhysics
2016English

Amanote Research

Note-taking for researchers

Follow Amanote

© 2025 Amaplex Software S.P.R.L. All rights reserved.

Privacy PolicyRefund Policy