The page lists 15 deliverables related to the research project "HOT".
title and desprition | type | last update |
---|---|---|
Investigation of strong single-photon coupling in a two-membrane systemInvestigate strong optomechanical coupling in a two-membrane system Programme: H2020-EU.1.2.2. - Topic(s): FETPROACT-01-2016 |
Documents, reports | 2020-03-25 |
Updated plan for the exploitation and dissemination of resultsReport on updated plan for exploitation and dissemination of results Programme: H2020-EU.1.2.2. - Topic(s): FETPROACT-01-2016 |
Documents, reports | 2020-03-25 |
Synchronisation and non-linear dynamicsExplore self-organisation, synchronisation, and non-linear dynamics of multiple mechanical elements through a theory and experiment collaboration Programme: H2020-EU.1.2.2. - Topic(s): FETPROACT-01-2016 |
Documents, reports | 2020-03-25 |
On-chip mechanical microwave isolator proof of conceptWork towards a proof of concept of an on-chip mechanical microwave isolator Programme: H2020-EU.1.2.2. - Topic(s): FETPROACT-01-2016 |
Documents, reports | 2020-03-25 |
Mobile phone application for engaging with schoolchildrenDevelop and advertise a mobile phone application, targeting schoolchildren and encouraging them to learn about such abstract concepts as radiation pressure; this application will be available across the EU Programme: H2020-EU.1.2.2. - Topic(s): FETPROACT-01-2016 |
Other | 2020-03-25 |
Report on interim resultsReport on interim results through periodic report. Programme: H2020-EU.1.2.2. - Topic(s): FETPROACT-01-2016 |
Documents, reports | 2020-03-25 |
Measurement of ultralow magnetic fields and voltages via integrated opto-electro-mechanical transducer at room temperatureCharacterization of the detection limits of ultralow magnetic fields and voltages via integrated opto-electro-mechanical transducer at room temperature Programme: H2020-EU.1.2.2. - Topic(s): FETPROACT-01-2016 |
Documents, reports | 2020-03-25 |
Bidirectional microwave-optical conversion with nanoscale opto-electro-mechanical transducer in the classical regimeInvestigation of bidirectional microwave-optical conversion with nanoscale opto-electro-mechanical transducer in the classical regime Programme: H2020-EU.1.2.2. - Topic(s): FETPROACT-01-2016 |
Documents, reports | 2020-03-25 |
Topological transport and/or signal routing- Investigate dissipative mechanisms for signal transport, including dark mode protocols Programme: H2020-EU.1.2.2. - Topic(s): FETPROACT-01-2016 |
Documents, reports | 2020-03-25 |
Kick-off meeting with all consortium partnersKick-off meeting to be organised by Coordinator to officially launch the project. Programme: H2020-EU.1.2.2. - Topic(s): FETPROACT-01-2016 |
Other | 2020-03-25 |
Logo, website, and social media accounts- Create network logo and launch online presence (website and major social networks) Programme: H2020-EU.1.2.2. - Topic(s): FETPROACT-01-2016 |
Websites, patent fillings, videos etc. | 2020-03-25 |
Characterisation, readout, control, and integration of multi-element devices- Use control techniques to generate nonclassical states, optimise transport, etc. Programme: H2020-EU.1.2.2. - Topic(s): FETPROACT-01-2016 |
Documents, reports | 2020-03-25 |
Monolithic opto-electro-mechanical transducer for room-temperature operationDevelopment of a monolithic opto-electro-mechanical transducer for room-temperature operation Programme: H2020-EU.1.2.2. - Topic(s): FETPROACT-01-2016 |
Documents, reports | 2020-03-25 |
Plan for the exploitation and dissemination of resultsDescribe plan for exploitation and dissemination of results. Programme: H2020-EU.1.2.2. - Topic(s): FETPROACT-01-2016 |
Documents, reports | 2020-03-25 |
Report on first year progressReport on first year progress. Programme: H2020-EU.1.2.2. - Topic(s): FETPROACT-01-2016 |
Documents, reports | 2020-03-25 |