<?xml version="1.0" encoding="UTF-8"?><ns2:project xmlns:ns1="http://gtr.rcuk.ac.uk/gtr/api" xmlns:ns2="http://gtr.rcuk.ac.uk/gtr/api/project" xmlns:ns3="http://gtr.rcuk.ac.uk/gtr/api/fund" xmlns:ns4="http://gtr.rcuk.ac.uk/gtr/api/person" xmlns:ns5="http://gtr.rcuk.ac.uk/gtr/api/project/outcome" xmlns:ns6="http://gtr.rcuk.ac.uk/gtr/api/organisation" ns1:created="2026-08-26T13:36:10Z" ns1:href="http://gtr.ukri.org/gtr/api/projects/2C5D1EDC-4C51-43B7-8C5B-9D9A92677966" ns1:id="2C5D1EDC-4C51-43B7-8C5B-9D9A92677966"><ns1:links><ns1:link ns1:href="http://gtr.ukri.org/gtr/api/persons/60DF2EF4-3637-4728-B662-84C00C886CD9" ns1:rel="PM_PER"/><ns1:link ns1:href="http://gtr.ukri.org/gtr/api/organisations/43B51A7D-9345-42E9-A90F-DEA3D352088D" ns1:rel="LEAD_ORG"/><ns1:link ns1:href="http://gtr.ukri.org/gtr/api/organisations/8F803676-67E2-43D1-A0E1-16189442A00D" ns1:rel="PARTICIPANT_ORG"/><ns1:link ns1:href="http://gtr.ukri.org/gtr/api/organisations/AF4765D9-6247-4F29-8672-2F0989CFE569" ns1:rel="PARTICIPANT_ORG"/><ns1:link ns1:href="http://gtr.ukri.org/gtr/api/organisations/43B51A7D-9345-42E9-A90F-DEA3D352088D" ns1:rel="PARTICIPANT_ORG"/><ns1:link ns1:href="http://gtr.ukri.org/gtr/api/organisations/3BA6CCBD-6CBA-48FF-AA80-6E6AFC06F893" ns1:rel="PARTICIPANT_ORG"/><ns1:link ns1:end="2027-03-30T23:00:00Z" ns1:href="http://gtr.ukri.org/gtr/api/funds/2D7A1D21-F6E3-406D-B9A1-C443FA8F5215" ns1:rel="FUND" ns1:start="2025-03-31T23:00:00Z"/></ns1:links><ns2:identifiers><ns2:identifier ns2:type="RCUK">10142097</ns2:identifier></ns2:identifiers><ns2:title>Multi-functional Microfabricated Atomic-Photonic Systems: Multi-MAPS</ns2:title><ns2:status>Active</ns2:status><ns2:grantCategory>Collaborative R&amp;D</ns2:grantCategory><ns2:leadFunder>Innovate UK</ns2:leadFunder><ns2:abstractText>Accurate inertial measurement units are critical for autonomous navigation where access to Global Navigation Satellite System networks is denied/unavailable/unreliable. This is particularly relevant to timing, navigation in defence, and civilian applications such as seabed explorations, autonomous infrastructure monitoring, and manufacturing control.

The Multi-MAPS project will develop a navigation-grade atomic-photonic module based on an atomic spin gyroscope. This 24-month project builds on the outputs of several quantum projects to create a pathway to developing a commercial atomic spin gyroscope based on co-magnetometry within the UK.</ns2:abstractText></ns2:project>