Experimental Entanglement Quantification for Unknown Quantum States in a Semi-Device-Independent Manner
Abstract
Using the concept of non-degenerate Bell inequality, we show that quantum entanglement, the critical resource for various quantum information processing tasks, can be quantified for any unknown quantum states in a semi-device-independent manner, where the quantification is based on the experimentally obtained probability distribution and beforehand knowledge on quantum dimension only. Specifically, as an application of our approach on multi-level systems, we experimentally quantify the entanglement of formation and the entanglement of distillation for qutrit-qutrit quantum systems. In addition, to demonstrate our approach for multi-partite systems, we further quantify the geometry measure of entanglement of three-qubit quantum systems. Our results supply a general way to reliably quantify entanglement in multi-level and multi-partite systems, thus paving the way to characterize many-body quantum systems by quantifying involved entanglement.
Keywords
Cite
@article{arxiv.2010.09442,
title = {Experimental Entanglement Quantification for Unknown Quantum States in a Semi-Device-Independent Manner},
author = {Yu Guo and Lijinzhi Lin and Huan Cao and Chao Zhang and Xiaodie Lin and Xiao-Min Hu and Bi-Heng Liu and Yun-Feng Huang and Zhaohui Wei and Yong-Jian Han and Chuan-Feng Li and Guang-Can Guo},
journal= {arXiv preprint arXiv:2010.09442},
year = {2025}
}
Comments
6 pages+4 figures, comments are welcome