Electrostatic steering of 100 keV grazing electrons near a biased rectangular silicon waveguide produces tunable strong coupling to waveguided modes with average photon yields exceeding ten per electron.
Electrons herald non-classical light
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Electron beams offer a route to probe and potentially tailor quantum coherence and entanglement in semiconductor and 2D material systems.
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Unity-order coupling between free electrons and multiphoton waveguided Fock states
Electrostatic steering of 100 keV grazing electrons near a biased rectangular silicon waveguide produces tunable strong coupling to waveguided modes with average photon yields exceeding ten per electron.
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Perspective on tailoring quantum coherence with electron beams
Electron beams offer a route to probe and potentially tailor quantum coherence and entanglement in semiconductor and 2D material systems.