Detecting $k$-nonstretchability via a class of informationally complete symmetric measurements
Yan Hong, Mengjia Zhang, Limin Gao, Huaqi Zhou, Limei Zhang

TL;DR
This paper develops criteria using informationally complete symmetric measurements to detect $k$-nonstretchability, a property related to multipartite entanglement, and demonstrates their effectiveness with explicit examples.
Contribution
It introduces new criteria based on $(s,t)$-POVMs for detecting $k$-nonstretchability, advancing the understanding of multipartite entanglement detection.
Findings
Established several criteria for $k$-nonstretchability.
Identified classes of $k$-nonstretchable states.
Demonstrated criteria's applicability with explicit examples.
Abstract
Characterizing multipartite entanglement is a fundamental problem in quantum information theory. The concept of -stretchability [Szalay, Quantum 3, 204 (2019)] provides a framework for describing multipartite entanglement structures. We investigate the detection of -nonstretchability using informationally complete -POVMs [Siudziska, Phys. Rev. A 105, 042209 (2022)], which encompass GSIC-POVMs and MUMs. Several criteria for -nonstretchability in multipartite quantum systems are established. These criteria identify classes of -nonstretchable states, and their applicability and advantages are demonstrated through explicit examples.
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Taxonomy
TopicsQuantum Information and Cryptography · Quantum Mechanics and Applications · Quantum Computing Algorithms and Architecture
