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John D. Bozek

Researcher at SLAC National Accelerator Laboratory

Publications -  294
Citations -  16291

John D. Bozek is an academic researcher from SLAC National Accelerator Laboratory. The author has contributed to research in topics: Photoionization & Ionization. The author has an hindex of 55, co-authored 282 publications receiving 14804 citations. Previous affiliations of John D. Bozek include Université Paris-Saclay & Lawrence Berkeley National Laboratory.

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Reconstruction of the time-dependent electronic wave packet arising from molecular autoionization.

TL;DR: It is shown how vibrationally resolved photoelectron spectra of H2 allow one to reconstruct the associated subfemtosecond autoionization dynamics by using the ultrafast nuclear dynamics as an internal clock, thus forgoing ultrashort pulses.
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Boron K‐shell spectroscopy of boron‐doped silicon

TL;DR: In this paper, the B K-edge spectra of various model compounds (BF3, KBF4, B2O3, B(OH)3, orthocarborane (B10H10C2H2) and elemental boron) were investigated to characterize the sensitivity of B K−edge spectras to local chemical environment.
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Mode-specific photoionization dynamics of a simple asymmetric target: OCS.

TL;DR: The results unambiguously demonstrate that the forbidden bending excitation is caused by photoelectron-mediated vibronic coupling, i.e., the variation in the electronic transition matrix element with geometry, rather than the traditional explanation of interchannel vibronic coupled with intensity borrowing between ionic states.
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Photoelectron angular distributions as sensitive probes of surfactant layer structure at the liquid–vapor interface

TL;DR: In this article , the authors used X-ray photoelectron spectroscopy to study the adsorption of a model surfactant, octanoic acid, at the water-gas interface.
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Angle-Resolved Auger Spectroscopy as a Sensitive Access to Vibronic Coupling

TL;DR: It is proposed that the angle-resolved Auger spectroscopy can in general provide very insightful information on the strength of the vibronic coupling.