Line-Mixing Calculations for the 5.3 μm NO Band

[1]  D. Kouri,et al.  Infinite order sudden approximation for rotational energy transfer in gaseous mixtures , 1999 .

[2]  K. Ichikawa,et al.  Line Shapes in the R-Branch of the 5.3 μm NO Band , 1997 .

[3]  C. Boulet,et al.  Calculation of absorption in the microwindows of the 4.3 μm CO2 band from an ECS scaling analysis , 1989 .

[4]  Jean-Michel Hartmann,et al.  Measurements and calculations of CO2 room‐temperature high‐pressure spectra in the 4.3 μm region , 1989 .

[5]  A. Pine,et al.  Q‐branch line mixing in N2O: Effects of l‐type doubling , 1988 .

[6]  C. Boulet,et al.  IOS and ECS line coupling calculation for the CO–He system: Influence on the vibration–rotation band shapes , 1987 .

[7]  D. Robert,et al.  Line coupling in the temperature and frequency dependences of absorption in the microwindows of the 4.3 μm CO2 band , 1986 .

[8]  N. N. Filippov,et al.  Influence of line interference on the vibration-rotation band shapes , 1984 .

[9]  D. Pritchard,et al.  Dynamical constraints on the transfer of angular momentum in rotationally inelastic collisions of I2(B 3Π) with He and Xe , 1982 .

[10]  S. Green Rotational excitation of symmetric top molecules by collisions with atoms. II. Infinite order sudden approximation , 1979 .

[11]  H. Rabitz,et al.  Quantum number and energy scaling for nonreactive collisions , 1979 .

[12]  John C. Polanyi,et al.  Mechanism of Rotational Relaxation , 1972 .

[13]  A. Ben-Reuven Impact Broadening of Microwave Spectra , 1966 .