Rotational energy transfer in collisions between CN (X, ν = 2) and argon. Comparison with results for helium
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Reference18 articles.
1. Resolution of interference effects in the rotational excitation of NO (N = O) by Ar
2. Parity propensities in rotational energy transfer of OH X 2Πi with helium
3. Pump–probe measurements of state‐to‐state rotational energy transfer rates in N2 (v=1)
4. Energy transfer as a function of collision energy. IV. State‐to‐state cross sections for rotational‐to‐translational energy transfer in HF+Ne, Ar, and Kr
5. Determining the anisotropic interaction potential of D2Ar from rotationally inelastic cross sections
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1. Vibrational overtone excitation of D2 in a molecular beam with a high-energy, narrow-bandwidth, nanosecond optical parametric oscillator/amplifier;Review of Scientific Instruments;2020-05-01
2. Doppler-Resolved Kinetics of Saturation Recovery;The Journal of Physical Chemistry A;2015-04-08
3. Argon-Induced Pressure Broadening, Shifting, and Narrowing in the CN A2Π–X2Σ+ (1–0) Band;The Journal of Physical Chemistry A;2013-06-11
4. Experimental characterization of the weakly anisotropic CN X 2Σ+ + Ne potential from IR-UV double resonance studies of the CN-Ne complex;The Journal of Chemical Physics;2011-05-14
5. Rotationally Inelastic Collisions of CN(A2Π) with Small Molecules;The Journal of Physical Chemistry A;2009-04-30
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