This inventor holds 1 USPTO granted patent. Top assignee: Physical Sciences, Inc.. Active years: 2017.
Company Filing History:
Years Active: 2017
Title: Alan Hoskinson – Innovator in Laser Technology
Introduction
Alan Hoskinson, based in Lexington, MA, is a notable inventor known for his significant contribution in the field of laser technology. With a focus on innovative solutions, Alan has patented a unique method that enhances the efficiency and functionality of lasers.
Latest Patents
Alan Hoskinson holds one patent titled "Optically Pumped Micro-Plasma." This patent describes a laser and method for providing a continuous wave output beam. The technology centers around a micro-plasma chip, capable of generating micro-plasmas within a resonant cavity. By introducing gas into the resonant cavity, the gas flows around the micro-plasma chip. The ignition and excitation of micro-plasmas lead to the creation of metastables, which are subsequently excited by an optical pump with adequate energy to induce lasing in the metastables. This innovative approach holds promise for advancements in laser applications.
Career Highlights
Throughout his career, Alan has worked diligently at Physical Sciences, Inc., where he has been instrumental in various research projects and developments related to laser technologies. His expertise in the field has been proven through his patent, which reflects his commitment to pushing the boundaries of laser innovation.
Collaborations
Alan has collaborated with esteemed colleagues, including W. Terry Rawlins and Steven J. Davis. Their collective efforts in research and development have played a significant role in enhancing the understanding and capabilities of laser technologies.
Conclusion
Alan Hoskinson is a dedicated inventor whose work in laser technology demonstrates the power of innovation. His patented method for optically pumped micro-plasma is a testament to his expertise and commitment to advancing technology in this field. As he continues his work at Physical Sciences, Inc., Alan's contributions are sure to influence future developments in laser applications.
