Sollentuna, Sweden

Markus Hennrich


 

Average Co-Inventor Count = 2.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: Innovator Markus Hennrich: Pioneering Advances in Ion Trapping Technology

Introduction: Markus Hennrich is a notable inventor based in Sollentuna, Sweden. With one patent to his name, he has made significant contributions to the field of ion trapping technology. His innovative approach aims to improve the control and manipulation of ions, which has implications for various scientific and technological advancements.

Latest Patents: Hennrich's patent, titled "Method and System for Reducing the Amplitude of an Oscillating Electric Field at the Equilibrium Position of a Trapped Ion," presents a novel technique for minimizing the quasi-static electric dipole field at the null position of an oscillating electric quadrupole field within an ion trap. This method involves trapping at least one ion within a trapping electric field, utilizing an interferometry sequence with precisely timed laser pulses to measure the ion's state and adjust the trapping field accordingly, thereby enhancing the reliability of ion state manipulation.

Career Highlights: Currently, Markus Hennrich works for Alpine Quantum Technologies GmbH, where he applies his expertise in the realm of quantum technology and ion manipulation. His work is essential for the advancement of quantum computing and related fields, positioning him as a key figure in ongoing research and development.

Collaborations: Working alongside Gerard Higgins, Hennrich's collaborative efforts contribute to the innovative projects at Alpine Quantum Technologies GmbH. Their combined expertise and research initiatives are paving the way for new breakthroughs in quantum technologies and ion trapping methodologies.

Conclusion: As an inventor, Markus Hennrich is making strides in the scientific community through his inventive methods in ion trapping technology. His contributions not only advance academic research but also hold potential for practical applications in the evolving landscape of quantum technologies.

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