Higher moments of entanglement entropy distribution in hybrid quantum circuits distinguish measurement-induced phases and are captured by a phenomenological model for area-law combined with directed polymer description for volume-law.
Fano, Phys
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Photon addition to cat states produces a parity phase shift for odd additions and drives sub-Poissonian statistics regardless of component phase, trading quadrature squeezing for amplitude-squared squeezing.
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On the Entanglement Entropy Distribution of a Hybrid Quantum Circuit
Higher moments of entanglement entropy distribution in hybrid quantum circuits distinguish measurement-induced phases and are captured by a phenomenological model for area-law combined with directed polymer description for volume-law.
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Nonclassicality of multi-photon-added cat states
Photon addition to cat states produces a parity phase shift for odd additions and drives sub-Poissonian statistics regardless of component phase, trading quadrature squeezing for amplitude-squared squeezing.