Above-threshold ionization driven by bright squeezed vacuum enables tunable large-amplitude optical Schrödinger cat states via photoelectron momentum heralding, with robustness to finite resolution and Bell inequality violation.
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Quantum fluctuations break dynamical symmetry of circular light in solid-state HHG, enabling classically forbidden harmonics in graphene and MoS2.
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Erasing photons from bright squeezed vacuum light via above-threshold ionization
Above-threshold ionization driven by bright squeezed vacuum enables tunable large-amplitude optical Schrödinger cat states via photoelectron momentum heralding, with robustness to finite resolution and Bell inequality violation.