Hasselt, Belgium

Emilie Bourgeois


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 6(Granted Patents)


Company Filing History:


Years Active: 2019

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1 patent (USPTO):Explore Patents

Title: Emilie Bourgeois: Innovator in Magnetometer Technology

Introduction: Emilie Bourgeois, based in Hasselt, Belgium, is an innovative inventor recognized for her groundbreaking work in the field of sensor technology. With a strong focus on advanced materials, she has successfully developed a unique magnetometer sensor that leverages the properties of diamond for enhanced performance.

Latest Patents: Bourgeois holds a significant patent titled "Magnetometer Sensor with Negatively Charged Nitrogen-Vacancy Centers in Diamond." This invention encompasses a magnetometer sensor that integrates a diamond crystal with negatively charged nitrogen-vacancy centers. The design includes one or more light sources, an electrode, and a read-out module that comprises a read-out circuit and a lock-in amplifier. Additionally, it features a microwave source for applying a microwave field to the nitrogen-vacancy centers, further enabling precise magnetic field measurements.

Career Highlights: Throughout her career, Emilie Bourgeois has made substantial contributions to research and technology while working with esteemed organizations like Imec and Universiteit Hasselt. Her expertise in creating advanced sensor technologies has established her as a leading figure in her field.

Collaborations: Emilie's collaboration with notable researchers such as Jaroslav Hruby and Milos Nesladek has further enriched her work. These partnerships have facilitated the advancement of innovative technologies, particularly in the realm of magnetometry.

Conclusion: Emilie Bourgeois stands out as a talented inventor with a pivotal patent that signifies considerable advancement in magnetometer technology. Through her work, she not only showcases her technical expertise but also contributes to the evolving landscape of sensor innovations. Her accomplishments inspire future endeavors in the field, paving the way for new possibilities in magnetic field measurement and beyond.

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