Bright squeezed vacuum light enhances asymmetry in strong-field ionization photoelectron momentum distributions by orders of magnitude compared to classical fields, due to amplitude fluctuations that modify tunneling probability while leaving continuum dynamics largely unchanged.
Weinberg, Phys
4 Pith papers cite this work. Polarity classification is still indexing.
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UNVERDICTED 4representative citing papers
IceCube DeepCore atmospheric neutrino data yields δ_CP-independent constraints on NSI parameters ε_eμ and ε_eτ that are consistent with standard interactions.
Duplicating the hypercharge with identical values for normal matter but different values for the dark sector provides mechanisms for neutrino mass and dark matter.
Develops an SU(2)xU(1) non-Abelian Ginzburg-Landau theory for spin triplet superconductivity featuring two supercurrents, non-Abelian Meissner effect, magnetic and spin vortices, ordinary and spin monopoles, and three distinct mass scales.
citing papers explorer
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Interferometrically Enhanced Asymmetry in Strong-field Ionization with Bright Squeezed Vacuum
Bright squeezed vacuum light enhances asymmetry in strong-field ionization photoelectron momentum distributions by orders of magnitude compared to classical fields, due to amplitude fluctuations that modify tunneling probability while leaving continuum dynamics largely unchanged.
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$\delta_{\rm CP}$-free constraints on NSI parameters $\varepsilon_{e\mu}$ and $\varepsilon_{e\tau}$ using high-purity $\nu_\mu\,{\rm CC}$ events at IceCube DeepCore
IceCube DeepCore atmospheric neutrino data yields δ_CP-independent constraints on NSI parameters ε_eμ and ε_eτ that are consistent with standard interactions.
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Twin hypercharges
Duplicating the hypercharge with identical values for normal matter but different values for the dark sector provides mechanisms for neutrino mass and dark matter.
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Non-Abelian Ginzburg-Landau Theory of Spin Triplet Superconductivity
Develops an SU(2)xU(1) non-Abelian Ginzburg-Landau theory for spin triplet superconductivity featuring two supercurrents, non-Abelian Meissner effect, magnetic and spin vortices, ordinary and spin monopoles, and three distinct mass scales.