Special Notice · S-167695
TECHNOLOGY LICENSING OPPORTUNITY: Maximum Length Sequence Phase Encoding for Quantum Sensor Readout
Quantum sensors can detect extremely small electromagnetic and magnetic signatures, which makes them powerful tools for geophysical analysis, materials detection, environmental monitoring, and scientific research. Their sensitivity also makes them vulnerable to interference from ambient RF sources, electrical noise, and outdoor or industrial environments. Traditional readout methods attempt to preserve the phase of the sensor or allow it to evolve uniformly, but these approaches can produce ambiguous results or false positives when exposed to strong interference. Los Alamos researchers developed a pseudorandom phase-encoding method that allows a quantum sensor to distinguish true target signals from substantial background noise. By applying a maximum length sequence, also called an msequence, the sensor�s phase is flipped by 180 degrees according to a designed pattern. The resulting measurement is analyzed using correlation against the known sequence, enabling accurate extraction of t…
Excerpt as published. The complete description, attachments, and any amendments are on the official notice.
GrantSet indexes public records and is not the official application channel. Responses and applications go through SAM.gov only — the official notice there controls if anything shown here differs.