Advanced Miniature IR Spectral Processor for the Infrared Spectral Monitoring of Spacecraft Vital Life-Support Systems and Remote Astronaut Health Diagnostics

[1]  Robert M. Hammaker,et al.  Hadamard Transform Near-Infrared Spectrometers , 2006 .

[2]  M. Querry,et al.  Wedge shaped cell for highly absorbent liquids: infrared optical constants of water. , 1989, Applied optics.

[3]  B. Schrader Infrared and Raman Spectroscopy , 1995 .

[4]  Wanping Zheng,et al.  Advanced Integrated-Optic and MNT Technologies for the Infrared Spectral Monitoring of Spacecraft Vital Life-Support Systems and Remote Astronaut Health Diagnostics , 2005 .

[5]  Alexander Pergament,et al.  Electrical switching and Mott transition in VO2 , 2000 .

[6]  M. J. Persky A review of spaceborne infrared Fourier transform spectrometers for remote sensing , 1995 .

[7]  Roman V. Kruzelecky,et al.  Integrated Thin-Film Smart Coatings with Dynamically-Tunable Thermo-Optical Characteristics , 2002 .

[8]  Gijsbert Tan,et al.  Status Report on ANITA, an FTIR Spectrometer Flight Experiment for Manned Space Cabin Air Analysis , 2002 .

[9]  Linh Ngo Phong,et al.  Miniature High-Performance Infrared Spectrometer for the Monitoring of Spacecraft Vital Life-Support Systems , 2003 .

[10]  Tom Visser,et al.  Infrared Spectroscopy in Environmental Analysis , 2006 .

[11]  Roman V. Kruzelecky,et al.  Optical switching of vanadium dioxide thin films deposited by reactive pulsed laser deposition , 2004 .

[12]  C. H. Griffiths,et al.  Influence of stoichiometry on the metal‐semiconductor transition in vanadium dioxide , 1974 .

[13]  Henry H. Mantsch,et al.  Infrared Spectroscopy in Clinical and Diagnostic Analysis , 2006 .