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Integrated Photonics for Adaptive Discrete Multi-carrier Space-based Optical Communication and Ranging

Completed TRL 4 (started at 2, targeting 4)

Description

Spacecrafts and commercial communications satellites operate under stringent power, size and weight constraints but are being required to transfer rapidly-increasing amounts of data back to Earth or across a network in space. Photonic microchips can make energy-efficient, high-bandwidth communication possible while freeing resources for the benefit of science payload instruments. UC San Diego researchers will develop the technology for integrated photonic transceiver components that will comprise a variable-bit-rate coherent laser optical communication and relay network in near-Earth space at wavelengths near 1550 nm.

Benefits

Photonic microchips can make energy-efficient, high-bandwidth communication possible while freeing resources for the benefit of science payload instruments.

Details

Technology areaCommunications, Navigation, and Orbital Debris Tracking and Characterization Systems > Revolutionary Communications Technologies > Quantum Communications
ProgramSpace Technology Research Grants (STRG)
Lead organizationUniversity of California-San Diego, La Jolla, CA
Start date2016-01-28
End date2020-01-27

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This is early/mid-stage (TRL 4) — the most realistic path in is NASA SBIR/STTR, which funds small businesses and research institutions to develop technology aligned with NASA's needs (equity-free, phased funding). Check whether a current SBIR/STTR solicitation topic overlaps with this project's technology area, or contact the project directly (above) to ask.

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