DOE OSTI · 3363548
Probing Attosecond Bound Electron Dynamics Driven by Strong-Field Light Transients
Abstract
The project aimed to drive strong-field excitation of bound electronic coherences in gas-phase atoms and molecules using a novel source of near-single-cycle optical field transients, based on industrial-grade Yb:solid-state laser technology. Key objectives included generating near-single cycle field transients and isolated attosecond pulses, reconstructing time-dependent wave packets in atoms and molecules, probing their decoherence using attosecond interferometry, and controlling the dynamic evolution of systems on attosecond to few-femtosecond timescales. A secondary goal of the project was to develop field-resolved measurement platforms as a novel approach for studying electron dynamics in atomic and molecular systems.
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Chini, Michael [Univ. of Central Florida, Orlando, FL (United States)]. 2026-05-14. Probing Attosecond Bound Electron Dynamics Driven by Strong-Field Light Transients. https://doi.org/10.2172/3363548
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