Interlayer coupling in layered solids modifies high harmonic generation yields via a fourth-order polynomial dependence even for in-plane polarized driving lasers.
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In an intraband ZnO model, thermal light and bright-squeezed vacuum driving produce higher HHG cutoffs than coherent or Fock states, and the generated field inherits driver fluctuations.
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Ultrafast spectroscopy and role of interlayer coupling in high harmonic generation from layered solids
Interlayer coupling in layered solids modifies high harmonic generation yields via a fourth-order polynomial dependence even for in-plane polarized driving lasers.
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High-Harmonic Generation in a Crystal Driven by Quantum Light
In an intraband ZnO model, thermal light and bright-squeezed vacuum driving produce higher HHG cutoffs than coherent or Fock states, and the generated field inherits driver fluctuations.