This inventor holds 1 USPTO granted patent and 1 published patent application. Top assignee: Applied Materials, Inc.. Active years: 2026.
Company Filing History:
Years Active: 2026
Title: Innovations by Jared Forrest Traynor in Photonics
Introduction
Jared Forrest Traynor is an accomplished inventor based in San Jose, CA. He has made significant contributions to the field of photonics, particularly in the area of surface roughness reduction. His innovative approaches have the potential to enhance the performance of photonic devices.
Latest Patents
Traynor holds a patent titled "Surface roughness reduction for photonics using high-temperature implantation." This patent discloses methods for forming a uniform film with reduced surface roughness for photonic applications. One of the key methods involves providing a workpiece that includes a contact etch stop layer (CESL) over a device layer. The CESL is patterned to expose an upper surface of the device layer in a waveguide target area. Additionally, a waveguide is patterned from a dielectric film formed over the waveguide target area. The method further includes directing ions into the upper surface of the waveguide using a high-temperature ion implant to decrease the surface roughness of the upper surface of the waveguide. This innovative technique is crucial for improving the efficiency of photonic devices.
Career Highlights
Jared Traynor is currently employed at Applied Materials, Inc., where he continues to work on cutting-edge technologies in the field of photonics. His expertise and innovative mindset have positioned him as a valuable asset to the company.
Collaborations
Traynor has collaborated with notable colleagues, including Eric Jay Simmons, Jr. and Qintao Zhang. These collaborations have further enriched his work and contributed to advancements in photonic technologies.
Conclusion
Jared Forrest Traynor's contributions to the field of photonics through his innovative patent demonstrate his commitment to advancing technology. His work not only enhances the performance of photonic devices but also showcases the importance of innovation in this rapidly evolving field.
