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Figure 1. Спектр поглощения за кантом полосы 3ν3 СО2.  а – эксперимент, б – расчет с дисперсионным контуром, в – расчет по формуле (1). 1 -  для СО2+СО2, 2 – для СО2+Ar, 3 – для СО2+Не.
Absorption spectrum behind the edge of the 3ν3 CO2 band. a - experiment, b - calculation with a dispersion contour, c - calculation by formula (1). 1 - for CO2+CO2, 2 - for CO2+Ar, 3 - for CO2+He.
Defined Function=-lg(K)
Reference Composite plot
Баранов Ю.И., Буланин М.О., Тонков М.В., Исследование крыльев линий колебательно-вращательной полосы 3ν3 СО2, Оптика и спектроскопия, 1981, Volume 50, no. 3, Pages 613-615.
Coordinate system (Linear, Linear)
Abscissa (X-axis)
System. Physical Quantity (Unit)
Wavenumber (cm⁻¹) Ordinate (Y-axis)
System. Physical Quantity (Unit)
Defined Function
Publication. Physical quantity (X-axis) Publication. Physical quantity (Y-axis)
Figure 1. 1.4 mkm band. CO₂+Ar, calculation on (1). Спектр поглощения за кантом полосы 3ν3 СО2.  расчет по формуле (1).  для СО2+Ar.
Absorption spectrum behind the edge of the 3ν3 CO2 band. calculation by formula (1).  for CO2+Ar.
Commentary Additional description
Substance Ar + CO2 Method type Theoretical
Temperature Method, Model, Approximation  
Pressure (total) 7 Numerical array origin Digitized
Pressure (partial) 7 Numerical array type Primary
Path Length  
Density
Wavenumber (T dependence)

Figure 1. 1.4 mkm band. CO₂+Ar, calculation with dispersion contour. Спектр поглощения за кантом полосы 3ν3 СО2.  расчет с дисперсионным контуром,  для СО2+Ar.
Absorption spectrum behind the edge of the 3ν3 CO2 band. calculation with a dispersion contour,  for CO2+Ar.
Commentary Additional description
Substance Ar + CO2 Method type Theoretical
Temperature Method, Model, Approximation  
Pressure (total) 7 Numerical array origin Digitized
Pressure (partial) 7 Numerical array type Primary
Path Length  
Density
Wavenumber (T dependence)

Figure 1. 1.4 mkm band. CO₂+Ar, experiment. Спектр поглощения за кантом полосы 3ν3 СО2.  эксперимент,  для СО2+Ar.
Absorption spectrum behind the edge of the 3ν3 CO2 band. experiment, for CO2+Ar.
Commentary Additional description
Substance Ar + CO2 Method type Experimental
Temperature Method, Model, Approximation  
Pressure (total) Numerical array origin Digitized
Pressure (partial) Numerical array type Primary
Path Length  
Density
Wavenumber (T dependence)

Figure 1. 1.4 mkm band. CO₂+CO₂, calculation on (1). Спектр поглощения за кантом полосы 3ν3 СО2.  расчет по формуле (1).  для СО2+СО2.
Absorption spectrum behind the edge of the 3ν3 CO2 band. calculation by formula (1). for CO2+CO2.
Commentary Additional description
Substance CO2 Method type Theoretical
Temperature Method, Model, Approximation  
Pressure (total) 4 Numerical array origin Digitized
Pressure (partial) Numerical array type Primary
Path Length  
Density
Wavenumber (T dependence)

Figure 1. 1.4 mkm band. CO₂+CO₂, calculation with dispersion contour. Спектр поглощения за кантом полосы 3ν3 СО2.  расчет с дисперсионным контуром,  для СО2+СО2.
Absorption spectrum behind the edge of the 3ν3 CO2 band. calculation with a dispersion contour, for CO2+CO2.
Commentary Additional description
Substance CO2 Method type Theoretical
Temperature Method, Model, Approximation  
Pressure (total) 4 Numerical array origin Digitized
Pressure (partial) Numerical array type Primary
Path Length  
Density
Wavenumber (T dependence)

Figure 1. 1.4 mkm band. CO₂+CO₂, experiment. Спектр поглощения за кантом полосы 3ν3 СО2.   эксперимент,  для СО2+СО2.
Absorption spectrum behind the edge of the 3ν3 CO2 band. experiment,  for CO2+CO2.
Commentary Additional description
Substance CO2 Method type Experimental
Temperature Method, Model, Approximation  
Pressure (total) Numerical array origin Digitized
Pressure (partial) Numerical array type Primary
Path Length  
Density
Wavenumber (T dependence)

Figure 1. 1.4 mkm band. CO₂+He, calculation on (1). Спектр поглощения за кантом полосы 3ν3 СО2.  расчет по формуле (1). для СО2+Не.
Absorption spectrum behind the edge of the 3ν3 CO2 band. calculation by formula (1).  for CO2+He.
Commentary Additional description
Substance CO2 + He Method type Theoretical
Temperature Method, Model, Approximation  
Pressure (total) Numerical array origin Digitized
Pressure (partial) Numerical array type Primary
Path Length  
Density
Wavenumber (T dependence)

Figure 1. 1.4 mkm band. CO₂+He, calculation with dispersion contour. Спектр поглощения за кантом полосы 3ν3 СО2.  расчет с дисперсионным контуром, для СО2+Не.
Absorption spectrum behind the edge of the 3ν3 CO2 band. calculation with a dispersion contour, for CO2+He.
Commentary Additional description
Substance CO2 + He Method type Theoretical
Temperature Method, Model, Approximation  
Pressure (total) Numerical array origin Digitized
Pressure (partial) Numerical array type Primary
Path Length  
Density
Wavenumber (T dependence)

Figure 1. CO₂+He, experiment. Спектр поглощения за кантом полосы 3ν3 СО2.  эксперимент,  для СО2+Не.
Absorption spectrum behind the edge of the 3ν3 CO2 band. experiment,  for CO2+He.
Commentary Additional description
Substance CO2 + He Method type Experimental
Temperature Method, Model, Approximation  
Pressure (total) Numerical array origin Digitized
Pressure (partial) Numerical array type Primary
Path Length  
Density
Wavenumber (T dependence)

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INTAS grants 00-189, 03-51-3394, RFBR grants 02-07-90139, 05-07-90196, 08-07-00318
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