Parity-Dependent Rotational Energy Transfer in CN(A2Π, ν = 4, j F1ε) + N2, O2, and CO2 Collisions
Author:
Affiliation:
1. Institute of Chemical Sciences, Heriot-Watt University, Edinburgh EH14 4AS, United Kingdom
Funder
National Science Foundation
Publisher
American Chemical Society (ACS)
Subject
Physical and Theoretical Chemistry
Link
https://pubs.acs.org/doi/pdf/10.1021/jp4123503
Reference61 articles.
1. STATE-RESOLVED COLLISION-INDUCED ELECTRONIC TRANSITIONS
2. Experimental measurements of state resolved, rotationally inelastic energy transfer
3. Parity-dependent rotational rainbows in D2–NO and He–NO differential collision cross sections
4. Measurements and Quasi-Quantum Modeling of the Steric Asymmetry and Parity Propensities in State-to-State Rotationally Inelastic Scattering of NO (2Π1/2) with D2
5. Interference structures in the differential cross-sections for inelastic scattering of NO by Ar
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1. Mixed quantum/classical theory for rotational energy exchange in symmetric-top-rotor + linear-rotor collisions and a case study of the ND3 + D2 system;Physical Chemistry Chemical Physics;2023
2. Inelastic Scattering of CN Radicals at the Gas–Liquid Interface Probed by Frequency-Modulated Absorption Spectroscopy;The Journal of Physical Chemistry C;2020-07-07
3. Non-intuitive rotational reorientation in collisions of NO(A 2Σ+) with Ne from direct measurement of a four-vector correlation;Nature Chemistry;2018-08-27
4. Rotationally inelastic scattering of NO(A2Σ+) + Ar: Differential cross sections and rotational angular momentum polarization;The Journal of Chemical Physics;2015-11-28
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