Puliyil Samgeeth, Banik Manik, Alimuddin Mir
School of Physics, IISER Thiruvananthapuram, Vithura, Kerala 695551, India.
Department of Theoretical Sciences, S.N. Bose National Center for Basic Sciences, Block JD, Sector III, Salt Lake, Kolkata 700106, India.
Phys Rev Lett. 2022 Aug 12;129(7):070601. doi: 10.1103/PhysRevLett.129.070601.
The theory of bipartite entanglement shares profound similarities with thermodynamics. In this Letter we extend this connection to multipartite quantum systems where entanglement appears in different forms with genuine entanglement being the most exotic one. We propose thermodynamic quantities that capture a signature of genuineness in multipartite entangled states. Instead of entropy, these quantities are defined in terms of energy-particularly the difference between global and local extractable works (ergotropies) that can be stored in quantum batteries. Some of these quantities suffice as faithful measures of genuineness and to some extent distinguish different classes of genuinely entangled states. Along with scrutinizing properties of these measures we compare them with the other existing genuine measures, and argue that they can serve the purpose in a better sense. Furthermore, the generality of our approach allows us to define suitable functions of ergotropies capturing the signature of k nonseparability that characterizes qualitatively different manifestations of entanglement in multipartite systems.
二分纠缠理论与热力学有着深刻的相似之处。在本信函中,我们将这种联系扩展到多体量子系统,在该系统中,纠缠以不同形式出现,其中真正的纠缠是最奇特的一种。我们提出了一些热力学量,这些量捕捉了多体纠缠态中真正纠缠的特征。这些量并非熵,而是根据能量来定义的,特别是全局和局部可提取功(能质)之间的差异,这些功可以存储在量子电池中。其中一些量足以作为真正纠缠的可靠度量,并在一定程度上区分不同类别的真正纠缠态。在仔细研究这些度量的性质之后,我们将它们与其他现有的真正度量进行比较,并认为它们能更好地满足这一目的。此外,我们方法的通用性使我们能够定义能质的合适函数,这些函数捕捉了k重不可分离性的特征,该特征定性地描述了多体系统中纠缠的不同表现形式。