Squeezed coherent states modify nonlinear Breit-Wheeler pair production by smoothing harmonics, enhancing higher-order channels, suppressing the single-photon channel, and increasing positron polarization even at fixed mean field amplitude.
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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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Nonlinear Breit-Wheeler Process Driven by Intense Squeezed Light
Squeezed coherent states modify nonlinear Breit-Wheeler pair production by smoothing harmonics, enhancing higher-order channels, suppressing the single-photon channel, and increasing positron polarization even at fixed mean field amplitude.