Key Exploitable Results
KEY EXPLOITABLE RESULT | AUTHOR | DESCRIPTION |
|---|---|---|
NanoCarb-S Mechanical & Thermal Design, incl. Cryocooler | Optimised thermo‑ and opto‑mechanical design for Nano‑Carb, integrating the required cryocooling and delivering a consolidated instrument concept | |
NanoCarb-S Interferometric Core Design, incl. NanoCarb-P Interferometric Core | ONERA | Methodology
definition,
upgraded tool
(Medoc code) for
backward and
forward retrieval,
proposition of
upgraded
design for B1, B2,
B3 and B4 band |
NanoCarb-S Front Telescope | Airbus | Front telescope
definition, and
performance |
NanoCarb-S Detection Chain | Airbus | Detection chain
definition,
specification
and
performance |
SCARBOn Constellation
System Topology | Airbus | Constellation
optimisation
from satellite
architecture up
to constellation
topology |
Production & Tooling
Guidelines | Airbus | Production &
Tooling
Guidelines for
cost-effective
and efficient
series
production of
instruments for
satellite
constellations |
Silicon Interferometer Manufacturing Rules | UGA | Specifications at component level then expertise in order to be able to manufacture the silicon interferometer array |
L0 -L1 Data Processing
Chain | UGA | Data processing
chain used as
reference and base for further
advanced
processing
algorithms and
methodology to
exploit
NanoCarb data
(IA, L2 inversion
using image
features, etc) |
L1 –L2 Data Processing
Chain | CNRS | Data processing
chain used as
reference and
base for further
advanced
processing
algorithms and
methodology to
exploit
NanoCarb data
(IA, L2 inversion
using image
features, etc) |
L2 –L4 Data Processing
Chain | DLR | Method for
estimating
emissions and
their uncertainty
from NanoCarb
data |