SBIR Phase I: Silicon photonics tunable laser for analyzing energy content of natural gas

NSF Award Search · 01002526DB NSF RESEARCH & RELATED ACTIVIT · $304,913 · view on nsf.gov ↗

Abstract

The broader impact and commercial potential of this Small Business Innovation Research (SBIR) Phase I project is to develop photonic chips—tiny devices that use light, instead of electricity, to perform sensing and measurement tasks. At the core of the project is a widely tunable laser, which means a laser whose color (or frequency) of light can be adjusted over a broad range. This flexibility allows it to detect different substances or measure distances with high precision. By using cost-effective manufacturing techniques from the microelectronics industry, the project aims to produce these lasers at scale. The first major application is in measuring the energy content of natural gas, which will support a more efficient and reliable energy infrastructure. The technology is positioned to enter a natural gas analysis market expected to grow from $700 million in 2025 to over $1 billion by 2030, with projected laser sales reaching $10 million annually by the third year of production. This Small Business Innovation Research (SBIR) project aims to develop and validate hybrid silicon photonic tunable lasers, demonstrating key performance metrics such as light-current characteristics, spectral output, and the ability to measure methane concentration with 0.01% accuracy using tunable diode laser absorption spectroscopy. Since the 1960s, the energy content of natural gas—expressed in British thermal units (Btu) per cubic foot—has typically been measured using natural gas chromatogr

Key facts

NSF award ID
2527578
Awardee
COOLAIMATE, INC (CA)
SAM.gov UEI
XAJ6JRHVVU69
PI
Yi Zhang
Primary program
01002526DB NSF RESEARCH & RELATED ACTIVIT
All programs
Instr Rsrch,Metro&Std NanTech, Optics and Photonics
Estimated total
$304,913
Funds obligated
$304,913
Transaction type
Standard Grant
Period
10/01/2025 → 03/31/2027