Infrared double resonance of SiH4with a tunable diode laser: Two‐photon absorptions and rotational relaxation times
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.454418
Reference27 articles.
1. Infrared double resonance of SF6 with a tunable diode laser
2. Infrared double resonance of SF6 with a tunable diode laser. II. Line shape analysis
3. Infrared double resonance of SF6 with a tunable diode laser. III. Observations of 2ν3←ν3 transitions and collisional relaxation in v3=1
4. Measurement of state‐to‐state rotational energy transfer in methane by infrared double resonance
5. Rotational energy transfer cross sections in methane (13CD4) from infrared double resonance measurements
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1. Collision-Free Infrared Multiphoton Dissociation of Silane;The Journal of Physical Chemistry A;2000-11-14
2. Reaction of Cl with vibrationally excited CH4 and CHD3: State‐to‐state differential cross sections and steric effects for the HCl product;The Journal of Chemical Physics;1995-11
3. Rotational Energy Transfer in Small Polyatomic Molecules11For Rodney I. McCormick (1946–1994), a leader, a scholar, and a friend.;Advances In Atomic, Molecular, and Optical Physics;1995
4. Direct measurement of rotational and vibrational relaxation in methane overtone levels by time‐resolved infrared double‐resonance spectroscopy;The Journal of Chemical Physics;1994-12-15
5. Calculation of collision induced energy transfer rates in tetrahedral molecules. Application to 12CH4 perturbed by argon;Journal of Quantitative Spectroscopy and Radiative Transfer;1994-09
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