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Studies of Intermediates Created via Dissociative Electron Attachment through Heavy-Rydberg Ion-Pair State Formation in Rydberg Atom Collisions

S. Buathong

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Abstract

The lifetimes and decay energetics of intermediates have been studied by measuring the velocity and angular distributions of heavy-Rydberg ion pair states formed through electron transfer in thermal-energy collisions between Rydberg atoms and attaching targets. The analysis of the experimental results by using Monte Carlo simulations indicates that electron attachment to CF3I and CH2Br2 forms very-short-lived intermediates whereas electron capture by CCl4 produces a long-lived intermediate.

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The lifetimes and decay energetics of intermediates have been studied by measuring the velocity and angular distributions of heavy-Rydberg ion pair states formed through electron transfer in thermal-energy collisions between Rydberg atoms and attaching targets. The analysis of the experimental results by using Monte Carlo simulations indicates that electron attachment to CF3I and CH2Br2 forms very-short-lived intermediates whereas electron capture by CCl4 produces a long-lived intermediate.

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Available abstract

The lifetimes and decay energetics of intermediates have been studied by measuring the velocity and angular distributions of heavy-Rydberg ion pair states formed through electron transfer in thermal-energy collisions between Rydberg atoms and attaching targets. The analysis of the experimental results by using Monte Carlo simulations indicates that electron attachment to CF3I and CH2Br2 forms very-short-lived intermediates whereas electron capture by CCl4 produces a long-lived intermediate.

Key concepts: Rydberg atom, Dissociative, Ion, Atomic physics, Rydberg formula, Atom (system on chip), Rydberg state, Chemistry

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