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Quantum Microwave Detection with Diamond Spins

Descripción del proyecto

Aumento de la eficacia y la velocidad de los sensores de microondas

La tecnología de microondas se utiliza en una amplia gama de campos científicos y tecnológicos, como las telecomunicaciones, la astronomía, la navegación y el control del tráfico aéreo y el diagnóstico médico. El equipo del proyecto QuMicro, financiado con fondos europeos, prevé desarrollar sensores ultrasensibles capaces de detectar microondas con una sensibilidad sin precedentes. La nueva plataforma para detectar señales de microondas a temperatura ambiente utilizará centros nitrógeno-vacante en el diamante. Si los investigadores lo consiguen, el sensor propuesto podrá medir la frecuencia, la amplitud y la fase de los campos de microondas en escalas de tiempo extremadamente rápidas. El sistema de QuMicro podría destacar como tecnología facilitadora para la comercialización de tecnologías de próxima generación, incluidos los ordenadores cuánticos.

Objetivo

Microwave detection is one of the most widely spread technologies in our society, spanning across areas as diverse as telecommunications, computers, radio-astronomy, navigation and air traffic control, spectroscopy, and medical diagnostics. In this proposal we address emerging and advanced MW applications that start from the same basis – a need for ultrasensitive detection with a high spectral resolution, and, in addition, requesting portable integrated instruments. Emerging quantum technology devices acting as sensors can lead to a major breakthrough in the application field through high sensitivity and frequency resolution. In QuMicro, we propose to develop a quantum technology for the next generation of microwave detection devices, surpassing the capabilities of all currently available methods .The devices will enable the rapid measurement of the frequency, amplitude, and phase of microwave fields. We will achieve extremely fast (nanosecond-scale) transient detection, a broad detection range spanning tens of gigahertz, and parts-per-million frequency resolution with ultrahigh sensitivity. The QuMicro system is based on a novel detection scheme and on the pioneering innovation concept of photoelectrically detected magnetic resonance with nitrogen-vacancy colour centre qubits in diamond, as a highly performant platform for microwave signal detection at room temperature. We will start our developments from a theoretical framework for quantum microwave sensing protocols and devices, and leveraging schemes based on many-body quantum correlations, implemented in QuMicro engineered devices.To achieve these goals, QuMicro will connect with scientists and engineers across a broad range of topics. The photoelectrical readout guarantees compatibility with scalable semiconductor electronics, providing a direct outlook towards commercial applications and a science-to-technology leap for microwave sensors with unrivalled performance.

Régimen de financiación

HORIZON-EIC - HORIZON EIC Grants

Coordinador

INTERUNIVERSITAIR MICRO-ELECTRONICA CENTRUM
Aportación neta de la UEn
€ 684 795,00
Dirección
KAPELDREEF 75
3001 Leuven
Bélgica

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Región
Vlaams Gewest Prov. Vlaams-Brabant Arr. Leuven
Tipo de actividad
Research Organisations
Enlaces
Coste total
€ 684 795,00

Participantes (5)