Boulder, CO, United States of America

Matheus Rosa


Average Co-Inventor Count = 1.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: Matheus Rosa: Innovator in Acoustic Materials

Introduction: Matheus Rosa is a prominent inventor based in Boulder, Colorado. He has made significant contributions to the field of acoustic materials, particularly through his innovative patent related to gyroid-based structures. His work is characterized by a unique approach to phononic crystals, which has implications for various applications in acoustics.

Latest Patents: Matheus Rosa holds a patent for "Gyroid-based acoustic materials and devices." This patent describes an acoustic device that includes a three-dimensional phononic crystal with cubic symmetry. The phononic crystal consists of two regions: a first region filled with a first material and a second region filled with a solid material that differs from the first. The boundary between these regions is shaped as a single gyroid surface, which maintains constant mean curvature and is not pinched off. The volume of the second region is equal to or greater than that of the first region. The first material can be a gas, such as air, or a fluid. This phononic crystal supports topological surface states, features a band structure with at least one degenerate point protected by nonsymmorphic symmetry, and exhibits negative refraction at the intersection of its external surfaces. Matheus Rosa has 1 patent to his name.

Career Highlights: Matheus Rosa is affiliated with the University of Colorado, where he continues to advance his research in acoustic materials. His work has garnered attention for its innovative approach and potential applications in various fields.

Collaborations: Matheus has collaborated with notable colleagues, including Yuning Guo and Massimo Ruzzene. Their combined expertise contributes to the advancement of research in phononic crystals and acoustic devices.

Conclusion: Matheus Rosa is a key figure in the development of gyroid-based acoustic materials, with a focus on phononic crystals that offer unique properties. His contributions to the field are paving the way for future innovations in acoustics.

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