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arxiv: 1605.07202 · v2 · pith:BMFBZGIMnew · submitted 2016-05-23 · 🪐 quant-ph

Entanglement and extreme spin squeezing of unpolarized states

classification 🪐 quant-ph
keywords statescriteriaparticlesspinderiveddickeentanglementparameters
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We present criteria to detect the depth of entanglement in macroscopic ensembles of spin-j particles using the variance and second moments of the collective spin components. The class of states detected goes beyond traditional spin-squeezed states by including Dicke states and other unpolarized states. The criteria derived are easy to evaluate numerically even for systems of very many particles and outperform past approaches, especially in practical situations where noise is present. We also derive analytic lower bounds based on the linearization of our criteria, which make it possible to define spin-squeezing parameters for Dicke states. In addition, we obtain spin squeezing parameters also from the condition derived in [A. S. Sorensen and K. Molmer, Phys. Rev. Lett. 86, 4431 (2001)]. We also extend our results to systems with fluctuating number of particles.

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  1. Estimating the best separable approximation of non-pure spin-squeezed states

    quant-ph 2025-04 unverdicted novelty 6.0

    Lower bounds on the best separable approximation distance for non-pure spin-squeezed states are obtained from the complete set of spin-squeezing inequalities, with symmetry-exploiting optimization for upper bounds, re...