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Self-trapping of slow electrons in the energy domain

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arxiv 2209.14850 v3 pith:PAP7ZFYB submitted 2022-09-29 quant-ph physics.atom-ph

Self-trapping of slow electrons in the energy domain

classification quant-ph physics.atom-ph
keywords electronselectronenergyinteractionlightdomainfieldquantum
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The interaction of light and swift electrons has enabled phase-coherent manipulation and acceleration of electron wavepackets. Here we investigate this interaction in a new regime where low-energy electrons (~20-200 eV) interact with a phase-matched light field. Our analytical and one-dimensional numerical study shows that slow electrons are subject to strong confinement in the energy domain due to the non-vanishing curvature of the electron dispersion. The spectral trap is tunable and an appropriate choice of light field parameters can reduce the interaction dynamics to only two energy states. The capacity to trap electrons expands the scope of electron beam physics, free-electron quantum optics and quantum simulators.

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