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Entanglement negativity of fermions: Monotonicity, separability criterion, and classification of few-mode states

机译:纠缠否定的费米:单调,可分离标准和几种模式态的分类

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We study quantum information aspects of the fermionic entanglement negativity recently introduced [H. Shapourian et al., Phys. Rev. B 95, 165101 (2017)] based on the fermionic partial transpose. In particular, we show that it is an entanglement monotone under the action of local quantum operations and classical communications, which preserves the local fermion-number parity, and satisfies other common properties expected for an entanglement measure of mixed states.We present fermionic analogs of tripartite entangled states such as W and Greenberger-Horne-Zeilinger states and compare the results of bosonic and fermionic partial transpose in various fermionic states, where we explain why the bosonic partial transpose fails in distinguishing separable states of fermions. Finally, we explore a set of entanglement quantities which distinguish different classes of entangled states of a system with two and three fermionic modes. In doing so, we prove that vanishing entanglement negativity is a necessary and sufficient condition for separability of N ≥ 2 fermionic modes with respect to the bipartition into one mode and the rest. We further conjecture that the entanglement negativity of inseparable states which mix local fermion-number parity is always nonvanishing.
机译:我们研究了最近引入的Fermionic Entantlement消极性的量子信息方面[H. Shapourian等人。,phy。 Rev. B 95,165101(2017)]基于Fermionic部分转置。特别地,我们表明它是局部量子运算和经典通信的作用中的缠结单调,其保留了本地Fermion号奇偶校验,并满足混合状态的缠结度量的其他常见特性。我们存在的食环异常类似物三方纠缠的国家,如W和Greenberger-Horne-Zeininger国家,并比较各种Fermionic状态的博源和铁饼部分转置的结果,在那里我们解释了为什么助击者部分转发在区分可分离的费米态的情况下失败。最后,我们探索了一系列纠缠量,这些纠缠量与两个和三种Fermionic模式区分开了系统的不同类别的纠缠状态。在这样做时,我们证明了消失的缠结消极性是一种必要的和充分的条件,用于将N≥2个Fermionic模式相对于双分层的分离成一个模式和其余部分。我们进一步推测,将局部Fermion-Number奇偶校验混合的不可分割状态的缠结消极性总是不变。

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