Activation of entanglement from quantum coherence and superposition
Abstract
Quantum entanglement and coherence are two fundamental features of nature, arising from the superposition principle of quantum mechanics. While considered as puzzling phenomena in the early days of quantum theory, it is only very recently that entanglement and coherence have been recognized as resources for the emerging quantum technologies, including quantum metrology, quantum communication, and quantum computing. In this work we study the limitations for the interconversion between coherence and entanglement. We prove a fundamental no-go theorem, stating that a general resource theory of superposition does not allow for entanglement activation. By constructing a CNOT gate as a free operation, we experimentally show that such activation is possible within the more constrained framework of quantum coherence. Our results provide new insights into the interplay between coherence and entanglement, representing a substantial step forward for solving longstanding open questions in quantum information science.
Keywords
Cite
@article{arxiv.1710.04447,
title = {Activation of entanglement from quantum coherence and superposition},
author = {Lu-Feng Qiao and Jun Gao and Alexander Streltsov and Swapan Rana and Ruo-Jing Ren and Zhi-Qiang Jiao and Cheng-Qiu Hu and Xiao-Yun Xu and Ci-Yu Wang and Hao Tang and Ai-Lin Yang and Zhi-Hao Ma and Maciej Lewenstein and Xian-Min Jin},
journal= {arXiv preprint arXiv:1710.04447},
year = {2018}
}
Comments
11 pages, 5 figures, Submitted