Field lines around an NV centre in diamond surrounded by nuclear spins

This research line focuses on the development and application of quantum sensing and metrology platforms for high-precision measurements under realistic conditions. It includes solid-state and atomic systems, such as nitrogen-vacancy centers in diamond, silicon-carbide devices, and Rydberg atoms, as well as photonic and optomechanical platforms, and the use of highly entangled states for quantum metrology under realistic, noisy conditions, enabling high-precision measurements. These systems enable the detection of magnetic and electric fields, temperature, and electromagnetic radiation with high sensitivity, addressing applications in areas such as industry, biomedicine, and environmental monitoring. In parallel, the line explores quantum-enhanced measurement strategies and develops compact quantum sensors based on specialty optical fibers and other platforms, aimed at accelerating the adoption of these technologies.

9 people in this line

NamePositionResearch lines
Acedo, PabloIkerbasque Research ProfessorQuantum Sensing & Metrology, Quantum Communications
Apellaniz, IagobaAssistant ProfessorQuantum Info & Quantum Math, Quantum Sensing & Metrology
Casanova, JorgeResearcherQuantum Optics & Control, Quantum Sensing & Metrology
Novoa, DavidIkerbasque Research FellowQuantum Optics & Control, Quantum Sensing & Metrology, Quantum Communications
Sanz, MikelRamón y Cajal ResearcherQuantum Computing, Quantum Sensing & Metrology
Toth, GézaIkerbasque Research ProfessorQuantum Info & Quantum Math, Quantum Sensing & Metrology
Vilas, Jose LuisFull ProfessorQuantum Sensing & Metrology
Villatoro, JoelIkerbasque Research ProfessorQuantum Sensing & Metrology
Zubia, JosebaFull ProfessorQuantum Optics & Control, Quantum Sensing & Metrology, Quantum Communications

Other lines in Quantum Sensing & Communications