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Rotationally Resolved Photoelectron Asymmetry Parameter of H2Using Ne-I 736Å Radiation

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Editorial: Christian Jungen

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Interference effects in the two‐photon ionization of nitric oxide

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Vibrational branching ratios following two‐color excitation of autoionizing np Rydberg states of H2

M. A. O’Halloran, P. M. Dehmer, F. S. Tomkins, S. T. Pratt and J. L. Dehmer
The Journal of Chemical Physics 89 (1) 75 (1988)
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Rotational state distributions from vibrational autoionization of H2

J. L. Dehmer, P. M. Dehmer, S. T. Pratt, F. S. Tomkins and M. A. O’Halloran
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Autoionization dynamics in the valence‐shell photoionization spectrum of CO

J. E. Hardis, T. A. Ferrett, S. H. Southworth, et al.
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Handbook on Synchrotron Radiation

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Constant‐ionic‐state spectroscopy of high‐v Rydberg states of molecular hydrogen

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The Journal of Chemical Physics 97 (5) 3038 (1992)
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TheJ= 2 ortho levels of thev= 0 to 6np singlet Rydberg series of molecular hydrogen revisited

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Excited-state molecular photoionization dynamics

S T Pratt
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Theoretical study of the photoionisation of H2

S Hara
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What are the basic mechanisms of electronic transitions in molecular dynamic processes?

Hiroki Nakamura
International Reviews in Physical Chemistry 10 (2) 123 (1991)
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Calculation of the photoelectron asymmetry parameters for the J = 0 → J1 = 2 transition in H2

Burke Ritchie
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The influence of autoionizing Rydberg states on the H2+ X 2Σg+ v+=0,1,2 state rotationally resolved photoelectron angular distributions and branching ratios

D.M.P. Holland and D.A. Shaw
Chemical Physics 441 109 (2014)
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Vibrational autoionization in H2above thev+=3 ionization limit

J. A. Stephens and Chris H. Greene
The Journal of Chemical Physics 100 (10) 7135 (1994)
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Photoelectron angular distributions from rotationally resolved autoionizing states of N2

A. M. Chartrand, E. F. McCormack, U. Jacovella, D. M. P. Holland, B. Gans, Xiaofeng Tang, G. A. Garcia, L. Nahon and S. T. Pratt
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Fluorescence polarization as a probe of molecular autoionization

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Miyabi Hiyama and Hiroki Nakamura
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Ab initio multichannel photoionisation of H2: photoelectron angular distribution for rotationally resolved states of H2+

N Chandra
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Multiphoton studies of molecular autoiohization

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Vibrationally resolved photoelectron angular distributions for H2

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Optical-optical double resonance MPI photoelectron spectroscopy of the no molecule via the C2Π(ν=4) state; ns and nd Rydberg series

Yohji Achiba and Katsumi Kimura
Chemical Physics 129 (1) 11 (1989)
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Double‐resonance studies of rotational autoionization of H2

M. A. O’Halloran, P. M. Dehmer, S. T. Pratt, J. L. Dehmer and F. S. Tomkins
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Competition between rotational and vibrational autoionization in H2

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Vacuum ultraviolet laser photoionization spectroscopy: A high-resolution study of spin-orbit autoionization in HI

D.J. Hart and J.W. Hepburn
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The effect of vibrational autoionization on the H2+X2Σg+state rotationally resolved photoionization dynamics

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Asymmetry profiles of the fragment anisotropy parameters along the Fano resonances in the photodissociation of H2

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The electron angular distribution of different rotational branches in the VUV photoelectron spectrum of H2

M -W Ruf, T Bregel and H Hotop
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Chris H. Greene and Ch. Jungen
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Resonance-enhanced multiphoton ionization of molecular hydrogen via the E,F1Σg+ state: Photoelectron energy and angular distributions

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Chemical Physics Letters 105 (1) 22 (1984)
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Spin polarization of molecular photoelectrons in the case of rotationally resolved photoionization spectra

G. Raşeev and N. A. Cherepkov
Physical Review A 42 (7) 3948 (1990)
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Triply differential photoelectron studies of non‐Franck–Condon behavior in the photoionization of acetylene

A. C. Parr, D. L. Ederer, J. B. West, D. M. P. Holland and J. L. Dehmer
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Double-resonance studies of electronically autoionizing states of molecular nitrogen

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J. L. Dehmer, Dan Dill and A. C. Parr
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