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Dynamics of ultrahigh molecular Rydbergs in weak electric fields
M. Bixon
*
,
Joshua Jortner
*
Corresponding author for this work
School of Chemistry
Research output
:
Contribution to journal
›
Article
›
peer-review
43
Scopus citations
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Keyphrases
Ultra-high
100%
Rydberg
100%
Weak Electric Field
100%
Time-resolved
60%
Model Calculation
40%
Electron Kinetic Energy
40%
Electric Field (E-field)
20%
Field-induced
20%
Dilution Effect
20%
Intrastate
20%
Hamiltonian Formalism
20%
Non-exponential Decay
20%
Scaling Laws
20%
Effective Hamiltonian
20%
Rydberg States
20%
Principal Quantum number
20%
Formal Analogy
20%
Decay Width
20%
Large Molecules
20%
Level Structure
20%
Temporal Decay
20%
Short Decay Time
20%
Population Probability
20%
Strong Mixing
20%
Chemistry
Electric Field
100%
Zero Electron Kinetic Energy
100%
Spectroscopy
50%
Dilution
50%
Relaxation
50%
Rydberg State
50%
Quantum Number
50%
Scaling Law
50%
Mathematics
Manifold
100%
Electric Field
100%
Timescale
66%
Probability Theory
33%
Quantum Number
33%
Decay Time
33%
Level Structure
33%
Strong Mixing
33%
Scaling Law
33%
Physics
Kinetic Energy
100%
Electric Field
100%
Rydberg State
50%
Quantum Number
50%
Material Science
Zero Electron Kinetic Energy
100%
Dilution
50%