Berkeley, CA, United States of America

Alexander Pines

USPTO Granted Patents = 31 

 

Average Co-Inventor Count = 4.6

ph-index = 16

Forward Citations = 762(Granted Patents)


Company Filing History:


Years Active: 1987-2024

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31 patents (USPTO):Explore Patents

Title: Innovations by Alexander Pines: A Pioneer in Diamond Hyperpolarization

Introduction: Alexander Pines is a renowned inventor based in Berkeley, California, notable for his significant contributions to the field of hyperpolarization and magnetic resonance. With an impressive portfolio of 31 patents, Pines has advanced the understanding and application of diamond nano- and micro-particles.

Latest Patents: Among Pines' latest innovations are two groundbreaking patents. The first patent details a method for orientation-independent, room-temperature hyperpolarization of diamond particles. This method involves applying laser energy to diamond samples, irradiating them with a sweeping microwave to induce polarization, and shuttling the particles through a magnetic field to detect carbon nuclei. The result is the ability to relay diamond polarization to nuclear spins within surrounding solids or fluids.

The second patent presents the concept of a wide dynamic range magnetic field cycler and an ultra-portable optical nanodiamond hyperpolarizer. This system includes either a superconducting or permanent magnet capable of reaching magnetic fields between 0.1 and 20 teslas. It is designed to effectively transfer samples between varying magnetic fields while hyperpolarizing them in low field environments, ultimately allowing for significant advancements in the transfer of nuclear spin hyperpolarization in diamond particles.

Career Highlights: Alexander Pines has had a distinguished career within esteemed institutions, particularly at the University of California. His work has paved the way for innovations in nuclear magnetic resonance techniques and the development of advanced materials that leverage hyperpolarized diamonds.

Collaborations: Throughout his career, Pines has collaborated with notable researchers such as John G. Clarke and Robert Francis McDermott. These partnerships have further driven innovation and discoveries in the field of physics and engineering.

Conclusion: Alexander Pines continues to be a leading figure in advancing the science of hyperpolarization. His groundbreaking patents not only reflect his innovative spirit but also contribute to the enhancement of technologies that rely on precise measurements and interactions at the quantum level. As research progresses, Pines’ contributions are likely to influence various applications across multiple scientific disciplines.

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