Line shift and mixing in the ν4 and 2ν2 band of NH3 perturbed by H2 and Ar
暂无分享,去创建一个
Johannes Orphal | Jean-Michel Hartmann | H. Aroui | J. Orphal | J. Hartmann | H. Aroui | M. Dhib | M. A. Echargui | M. Dhib
[1] G. Buffa,et al. Ammonia spectrum as a test for two different pressure shift theories. , 1989, Applied optics.
[2] L. Bonamy,et al. Overlapping effects and motional narrowing in molecular band shapes: Application to the Q branch of HDa) , 1977 .
[3] Giovanni Buffa,et al. N2, O2, H2, Ar and He broadening in the ν1 band of NH3 , 1993 .
[4] Bouanich,et al. Collisional-Broadening Coefficients in the nu6 Band of 12CH3F Perturbed by Ar. , 1998, Journal of molecular spectroscopy.
[5] J. Bouanich,et al. ABSORPTION INTENSITIES, PRESSURE-BROADENING AND LINE MIXING PARAMETERS OF SOME LINES OF NH3 IN THE ν4 BAND , 1998 .
[6] J. Orphal,et al. Line Broadening and Mixing in NH3 Inversion Doublets Perturbed by NH3, He, Ar, and H2 , 2001 .
[7] A. F. Krupnov,et al. A simultaneous analysis of the microwave, submillimeterwave, far infrared, and infrared-microwave two-photon transitions between the ground and ν2 inversion-rotation levels of 14NH3 , 1981 .
[8] C. Boulet,et al. Shifts of the vibration–rotation absorption lines of diatomic molecules perturbed by diatomic polar molecules. A theoretical analysis , 1976 .
[9] J. Bouanich,et al. Collisional Broadening Coefficients in the ν4 Band of NH3 Perturbed by He and Ar , 2000 .
[10] A. I. Maslov,et al. Molecules and their spectroscopic properties , 1998 .
[11] J. Margolis,et al. Microwave and Fourier-transform infrared spectroscopy of the v4 = 1 and v2 = 2 s states of NH3 , 1992 .
[12] Keeyoon Sung,et al. Measurements of line intensities and half-widths in the 10-μm bands of 14NH3 , 2004 .
[13] L. Bonamy,et al. Rotationally inelastic rates for N2–N2 system from a scaling theoretical analysis of the stimulated Raman Q branch , 1988 .
[14] A. Thakkar,et al. Accurate multipole moments for H2 and D2 including the effects of electron correlation and molecular vibration and rotation , 1993 .
[15] Keith E. Gubbins,et al. Theory of molecular fluids , 1984 .
[16] F. Thibault,et al. Experimental and theoretical study of line mixing in NH3 spectra. II. Effect of the perturber in infrared parallel bands. , 2004, The Journal of chemical physics.
[17] R. W. Parsons,et al. Pressure induced shifts of the (J,K)=(12,12) inversion line in the microwave spectrum of ammonia , 1972 .
[18] J. Bonamy,et al. Pressure broadening mechanisms of the ammonia lines: Rotation, inversion and rotation-inversion spectra of NH3 perturbed by monoatomic gases , 1975 .
[19] Ghislain Blanquet,et al. Diode-laser measurements of Ar- and CO2-broadened linewidths in the v1 band of OCS , 1988 .
[20] M. Broquier,et al. Pressure-Broadening and Cross-Relaxation Rates of Rotation–Inversion Transitions in the ν4Band of NH3Perturbed by CO2 , 1996 .
[21] R. Leavitt. Pressure broadening and shifting in microwave and infrared spectra of molecules of arbitrary symmetry: An irreducible tensor approach , 1980 .
[22] A. Weber,et al. Spectroscopy of the Earth's Atmosphere and Interstellar Medium , 1992 .
[23] H. Aroui,et al. Analysis of N2, O2, CO2, and air broadening of infrared spectral lines in the ν4 band of NH3 , 2001 .
[24] M. D. Rosa,et al. Temperature dependence of self-shift of ammonia transitions in the ν2 band , 1996 .
[25] K. C. Izgi,et al. IR–microwave double resonance studies of dipole moments in the ν1 and ν3 states of ammonia , 1997 .
[26] J. Bouanich,et al. Collision-induced simultaneous transitions in H2+CF4 and H2+SF6 mixtures , 1977 .
[27] Jean-Pierre Bouanich,et al. Contribution des moments octupolaire et hexadecapolaire a l'elargissement des raies spectrales de molecules linearaires , 1974 .
[28] P. Rosenkranz. Shape of the 5 mm oxygen band in the atmosphere , 1975 .
[29] D. Robert,et al. Short range force effects in semiclassical molecular line broadening calculations , 1979 .
[30] W. Smith,et al. Line positions and strengths in the H/sub 2/ quadrupole spectrum , 1982 .
[31] R. Leavitt. An irreducible tensor method of deriving the long‐range anisotropic interactions between molecules of arbitrary symmetry , 1980 .
[32] F. Thibault,et al. Experimental and theoretical study of line mixing in NH3 spectra. I. Scaling analysis of parallel bands perturbed by He , 2002 .
[33] B. Lemoine,et al. High Precision Pressure-Induced Lineshifts Measured with a Frequency-Stabilized Diode Laser: Application to the ν2 and (2ν2 − ν2) Bands of NH3 , 1994 .
[34] Alan S. Pine,et al. Self broadening in the v1 band of NH3 , 1993 .
[35] Giovanni Buffa,et al. Foreign-gas pressure broadening and shift of ammonia transition lines in the ν2 vibrational bands , 1990 .
[36] C. J. Tsao,et al. Line-widths of pressure-broadened spectral lines , 1962 .
[37] A. Chédin,et al. The tropospheric gas composition of Jupiter's north equatorial belt /NH3, PH3, CH3D, GeH4, H2O/ and the Jovian D/H isotopic ratio , 1982 .
[38] S. Nouri,et al. H2-Broadening Coefficients in the ν4 Band of NH3 , 2001 .