Rotationally Resolved Vacuum Ultraviolet Pulsed Field Ionization-Photoelectron Vibrational Bands for H2+ (X2g+, v+=0-18)
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry
Link
http://cps.scitation.org/doi/pdf/10.1088/1674-0068/20/04/352-364
Reference40 articles.
1. Spectroscopy of the hydrogen molecular ion
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3. Theoretical Study of H2+ Ground Electronic State Spectroscopic Properties
4. Spectroscopy and Quantum Mechanics of the Hydrogen Molecular Cation: A Test of Molecular Quantum Mechanics
5. The vibration–rotational energies of the hydrogen molecular ion HD+
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2. Fourier transform vibrational spectroscopy of D2+ by few-cycle near-infrared laser pulses;EPJ Web of Conferences;2019
3. Strong-Field Fourier Transform Vibrational Spectroscopy of D2+ Using Few-Cycle Near-Infrared Laser Pulses;Physical Review Letters;2018-06-28
4. A quantum-rovibrational-state-selected study of the proton-transfer reaction H2+(X2Σ+g: v+ = 1–3; N+ = 0–3) + Ne → NeH+ + H using the pulsed field ionization-photoion method: observation of the rotational effect near the reaction threshold;Physical Chemistry Chemical Physics;2017
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