This inventor holds 2 USPTO granted patents. Top assignees: United States of America as Represented by the Secretary of the Air Force, Other. Active years: 2020-2022.
Company Filing History:

Years Active: 2020-2022
Title: Naibo Jiang: Innovator in High-Speed Thermometry
Introduction
Naibo Jiang is a prominent inventor based in Dayton, OH (US). He has made significant contributions to the field of thermometry, particularly in high-speed, spectroscopic gas-phase measurements. With a total of 2 patents, Jiang's work is at the forefront of innovative temperature measurement technologies.
Latest Patents
Jiang's latest patents focus on systems and methods for high-speed, spectroscopic, gas-phase thermometry. These inventions involve creating a first beam with an energy of about 50 mJ/pulse and a pulse duration of about 100 ps. A second beam is also generated, with an energy of about 2.3 mJ/pulse and a pulse duration of about 58 ps. Both beams are directed into a probe region, resulting in an optical output. The properties of this optical output are measured at a sampling rate of at least 100 kHz, allowing for accurate temperature measurements derived from the measured properties. These systems are particularly useful in environments with highly turbulent and transient flow dynamics.
Career Highlights
Throughout his career, Naibo Jiang has worked with various organizations, including the United States of America as represented by the Secretary of the Air Force. His expertise in thermometry has positioned him as a key figure in advancing temperature measurement technologies.
Collaborations
Jiang has collaborated with notable professionals in his field, including Sukesh Roy and Mikhail N Slipchenko. These collaborations have further enhanced the impact of his work in thermometry.
Conclusion
Naibo Jiang's innovative contributions to high-speed thermometry demonstrate his commitment to advancing measurement technologies. His patents reflect a deep understanding of complex flow dynamics and the need for precise temperature measurements in challenging environments.