Critical exceptional points in dissipative collective-spin systems parametrically enhance steady-state quantum spin squeezing with specific variance scalings and eigenvector alignment.
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Real-time renormalization group on quantum operations produces chaotic flows in coherent-dominant regimes, and the measurement-induced PT transition belongs to the 1D Yang-Lee edge singularity universality class.
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Quantum Spin Squeezing Enhanced by Critical Exceptional Points
Critical exceptional points in dissipative collective-spin systems parametrically enhance steady-state quantum spin squeezing with specific variance scalings and eigenvector alignment.
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Renormalization of Quantum Operations: Parity-Time Transition and Chaotic Flows
Real-time renormalization group on quantum operations produces chaotic flows in coherent-dominant regimes, and the measurement-induced PT transition belongs to the 1D Yang-Lee edge singularity universality class.