Company Filing History:
Years Active: 2021-2024
Title: The Innovative Contributions of Ivana Gasulla Mestre
Introduction
Ivana Gasulla Mestre is a prominent inventor based in Valencia, Spain. She has made significant contributions to the field of photonic devices, holding a total of 3 patents. Her work focuses on the configuration and optimization of programmable optical circuits, which are essential for advancing optical and quantum signal processing.
Latest Patents
One of her latest patents is titled "Method of configuration and optimisation of programmable photonic devices." This invention enables scalable configuration and performance optimization for programmable optical circuits based on meshed structures. It allows for the execution of complex optical and quantum signal processing functions, making it applicable in circuits with varying degrees of complexity through waveguide mesh programming.
Another notable patent is the "Directional photonic coupler with independent tuning of coupling factor and phase difference." This invention features a coupler that includes two waveguides with phase shifters designed to modify propagation coefficients. The coupler allows for independent tuning of the power coupling factor and the common phase difference of optical output signals, making it particularly useful in photonic integrated circuits, coupled resonators, and Mach-Zehnder interferometers.
Career Highlights
Ivana has worked at prestigious institutions such as Universitat Politécnica de València. Her research and innovations have significantly impacted the field of photonics, showcasing her expertise and dedication to advancing technology.
Collaborations
Ivana has collaborated with notable individuals in her field, including José Capmany Francoy. Their joint efforts have contributed to the development of innovative solutions in photonic technology.
Conclusion
Ivana Gasulla Mestre's contributions to the field of photonics through her patents and collaborations highlight her role as a leading inventor. Her work continues to influence advancements in optical and quantum signal processing.