Invention Grant
- Patent Title: Method for calibration-free scanned-wavelength modulation spectroscopy for gas sensing
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Application No.: US14367420Application Date: 2012-12-19
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Publication No.: US09939376B2Publication Date: 2018-04-10
- Inventor: Ronald K. Hanson , Jay B. Jeffries , Kai Sun , Ritobrata Sur , Xing Chao
- Applicant: The Board of Trustees of the Leland Stanford Junior University
- Applicant Address: US CA Palo Alto
- Assignee: The Board of Trustees of the Leland Stanford Junior University
- Current Assignee: The Board of Trustees of the Leland Stanford Junior University
- Current Assignee Address: US CA Palo Alto
- Agency: Lumen Patent Firm
- International Application: PCT/US2012/070523 WO 20121219
- International Announcement: WO2013/096396 WO 20130627
- Main IPC: G01T3/00
- IPC: G01T3/00 ; G01N21/39 ; G01J3/433 ; G01N33/00

Abstract:
A method of calibration-free scanned-wavelength modulation spectroscopy (WMS) absorption sensing is provided by obtaining absorption lineshape measurements of a gas sample on a sensor using 1f-normalized WMS-2f where an injection current to an injection current-tunable diode laser (TDL) is modulated at a frequency f, where a wavelength modulation and an intensity modulation of the TDL are simultaneously generated, extracting using a numerical lock-in program and a low-pass filter appropriate band-width WMS-nf (n=1, 2, . . . ) signals, where the WMS-nf signals are harmonics of the f, determining a physical property of the gas sample according to ratios of the WMS-nf signals, determining the zero-absorption background using scanned-wavelength WMS, and determining non-absorption losses using at least two of the harmonics, where a need for a non-absorption baseline measurement is removed from measurements in environments where collision broadening has blended transition linewidths, where calibration free WMS measurements without knowledge of the transition linewidth is enabled.
Public/Granted literature
- US20140336957A1 Method for Calibration-Free Scanned-Wavelength Modulation Spectroscopy for Gas Sensing Public/Granted day:2014-11-13
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