Effective utilization of quantum-cascade distributed-feedback lasers in absorption spectroscopy.

نویسندگان

  • A A Kosterev
  • R F Curl
  • F K Tittel
  • C Gmachl
  • F Capasso
  • D L Sivco
  • J N Baillargeon
  • A L Hutchinson
  • A Y Cho
چکیده

A variable duty cycle quasi-cw frequency scanning technique was applied to reduce thermal effects resulting from the high heat dissipation of type I quantum-cascade lasers. This technique was combined with a 100-m path-length multipass cell and a zero-air background-subtraction technique to enhance detection sensitivity to a parts-in-10(9) (ppb) concentration level for spectroscopic trace-gas detection of CH4, N2O, H2O, and C2H5OH in ambient air at 7.9 micrometers. A new technique for analysis of dense high resolution absorption spectra was applied to detection of ethanol in ambient air, yielding a 125-ppb detection limit.

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عنوان ژورنال:
  • Applied optics

دوره 39 24  شماره 

صفحات  -

تاریخ انتشار 2000