Berkeley Professor Elected to Royal Academy of Engineering

The Royal Academy of Engineering elected UC Berkeley professor Ramesh Ramamoorthy to its 2026 Fellowship.

Updated on Sept. 24, 2026 in Materials Science

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University of California, Berkeley professor Ramesh Ramamoorthy has been elected to the Royal Academy of Engineering in recognition of his contributions to materials science. AI Illustration. Upload story photo >

The Royal Academy of Engineering inducted Professor Ramesh Ramamoorthy into its prestigious Fellowship in 2026. He is recognized for his extensive work in materials science and engineering at the University of California, Berkeley.

Why it matters

This Fellowship recognizes exceptional contributions to the field of engineering, highlighting Ramamoorthy's impact on the development of complex materials. His research has significantly advanced the study of ferroelectric thin films.

Professor Ramamoorthy holds over 80 patents related to ferroelectric thin films and devices. He utilized epitaxy to establish model systems for complex correlated oxides, effectively eliminating polarization fatigue.

The players

Ramesh Ramamoorthy

He is a Professor of Materials Science and Engineering at the University of California, Berkeley, and an expert in ferroelectric thin films.

Royal Academy of Engineering

Based in the United Kingdom, this national academy brings together the most successful and talented engineers to advance the profession.

The details

Professor Ramamoorthy demonstrated that conducting oxide electrodes can solve polarization fatigue by strictly controlling the electrode-ferroelectric interface. His numerous patents in this sector are currently undergoing commercialization processes.

Timeline

  1. Professor Ramesh Ramamoorthy was elected to the Royal Academy of Engineering Fellowship in 2026.

The Big Picture

The Royal Academy of Engineering Fellowship remains the premier benchmark for academic engineering achievement in the United Kingdom. The election of Ramamoorthy follows the institution's pattern of selecting global experts who have demonstrated significant commercial and scientific impact.

The commercialization of these ferroelectric technologies may lead to more durable and efficient electronic devices for consumers. Advancements in thin film stability are expected to improve the longevity of modern hardware components.

The takeaway

This honor underscores the growing importance of material innovations in solving long-standing physical limitations of electronic hardware. Industry researchers can look to these breakthroughs as a blueprint for improving the reliability of next-generation semiconductors.

Further reading

Learn more about the latest innovations in Materials Science.

Source note: This article includes information reported by Raeng.