Wolfwil, Switzerland

Remo Hügli


Average Co-Inventor Count = 7.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2013

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1 patent (USPTO):Explore Patents

Title: Innovations in Chirality: The Patented Work of Remo Hügli

Introduction

Remo Hügli, an innovative inventor based in Wolfwil, Switzerland, is making strides in the field of materials science, particularly with his research on chirality in kagome spin ice structures. With one patent to his name, Remo exemplifies how focused research can lead to significant advancements in understanding complex physical phenomena.

Latest Patents

Remo Hügli's patent, titled "Method of studying chirality controlled artificial kagome spin ice building blocks," addresses the challenges in achieving low energy states for the study of chiral kagome spin ice structures. The method involves several intricate steps, including the use of a silicon substrate, spin coating a polymethyl acrylate resist, and employing an electron beam writer to expose the substrate. Additionally, the patent highlights the integration of thin island ferromagnetic structures positioned along a honeycomb lattice, facilitating controlled chirality through a determined magnetization direction.

Career Highlights

Currently associated with the Paul Scherrer Institut, Remo has dedicated his career to advancing the understanding of high-energy materials and their applications. His work particularly focuses on the manipulation of magnetic properties at the nanoscale, leading to new possibilities in material design.

Collaborations

Throughout his journey, Remo has collaborated with esteemed colleagues, including Laura Heyderman and Elena Mengotti. Together, they delve into research that explores the intricacies of magnetic systems and their potential applications in various technological domains.

Conclusion

Remo Hügli's contributions to the field of material science, exemplified by his pioneering patent, showcase the potential for innovation in the study of chirality within kagome spin ice structures. His work not only enriches academic research but also paves the way for future advancements in technology.

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