Company Filing History:
Years Active: 2004-2015
Title: Arturo Chavez-Pirson: Innovator in IR Supercontinuum Fiber Technology
Introduction
Arturo Chavez-Pirson is a noteworthy inventor based in Tucson, AZ, recognized for his significant contributions to the field of optical technology. With a portfolio comprising 10 patents, he has established himself as a leading innovator in the development of infrared (IR) supercontinuum sources.
Latest Patents
Among his latest inventions, Chavez-Pirson's patents involve the innovative use of heavy metal oxide glasses for creating IR supercontinuum sources. These inventions detail a supercontinuum fiber that is formed from a heavy metal oxide host glass characterized by low optical loss and high non-linearity over the MIR and potentially LWIR spectral bands. The design includes a depressed inner clad fiber that is configured to support only single transverse spatial mode propagation of the pump signal and supercontinuum. Additionally, the source incorporates a tapered depressed inner clad fiber, allowing for effective coupling of the pump signal into the supercontinuum fiber, and may be configured as an 'all-fiber' source.
Career Highlights
Arturo Chavez-Pirson is currently associated with Np Photonics, Inc., where he has continued to innovate and push the boundaries of technology in the field of fiber optics. His emphasis on stability, strength, and chemical durability in materials used for fiber optics is highly regarded and has positioned him at the forefront of optical advancements.
Collaborations
Throughout his career, Chavez-Pirson has worked closely with talented individuals such as Shibin Jiang and Wenyan Tian. These collaborations have allowed him to share knowledge and drive the development of cutting-edge technologies in the realm of supercontinuum generation.
Conclusion
Arturo Chavez-Pirson's contributions to the field of optical technology, particularly through his innovative patents involving IR supercontinuum sources, demonstrate his commitment to advancing this critical area of research. His work not only enriches the scientific community but also holds the potential to revolutionize various applications reliant on optical technologies.