• Chinese Journal of Quantum Electronics
  • Vol. 39, Issue 1, 3 (2022)
Kai XU1、*, Huan CAO1、2, Chao ZHANG1, Xiaomin HU1, Yunfeng HUANG1, Biheng LIU1, and Chuanfeng LI1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.3969/j.issn.1007-5461. 2022.01.001 Cite this Article
    XU Kai, CAO Huan, ZHANG Chao, HU Xiaomin, HUANG Yunfeng, LIU Biheng, LI Chuanfeng. Recent advances in transmission of photonic orbital angular momentum quantum state[J]. Chinese Journal of Quantum Electronics, 2022, 39(1): 3 Copy Citation Text show less

    Abstract

    As an alternative of information carrier, orbital angular momentum (OAM) modes enable us to promote the development of high-capacity classical optical communication because there are an infinite number of orthogonal eigenstates in OAM beam in theory. In addition, high-dimensional quantum systems have attracted much interest of many scientists in recent years because of their higher channel capacity and more robust noise resistance. The OAM’s excellentdimension scalability makes it an important role in realization of high-dimensional systems. Recent research advances in photon OAM states transmission are reviewed, with main focus on the distribution of quantum superposition and entangled states in various transmission ways such as free space, fiber and underwater. And intractable problems in its practical use as well as several approaches to mitigating these conundrums are also elaborated, which can provide reference for relevant researchers.
    XU Kai, CAO Huan, ZHANG Chao, HU Xiaomin, HUANG Yunfeng, LIU Biheng, LI Chuanfeng. Recent advances in transmission of photonic orbital angular momentum quantum state[J]. Chinese Journal of Quantum Electronics, 2022, 39(1): 3
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