光纤
材料科学
量子
光电子学
量子点
稀土
纳米技术
光学
物理
量子力学
冶金
作者
Ori Ezrah Mor,Tal Ohana,Adrien Borne,Yael Diskin‐Posner,Maor Asher,Omer Yaffe,Abraham Shanzer,Barak Dayan
出处
期刊:ACS Photonics
[American Chemical Society]
日期:2022-07-28
卷期号:9 (8): 2676-2682
被引量:7
标识
DOI:10.1021/acsphotonics.2c00330
摘要
Crystals and fibers doped with rare-earth (RE) ions provide the basis for most of today's solid-state optical systems, from lasers and telecom devices to emerging potential quantum applications such as quantum memories and optical to microwave conversion. The two platforms, doped crystals and doped fibers, seem mutually exclusive, each having its own strengths and limitations, the former providing high homogeneity and coherence and the latter offering the advantages of robust optical waveguides. Here we present a hybrid platform that does not rely on doping but rather on coating the waveguide─a tapered silica optical fiber─with a monolayer of complexes, each containing a single RE ion. The complexes offer an identical, tailored environment to each ion, thus minimizing inhomogeneity and allowing tuning of their properties to the desired application. Specifically, we use highly luminescent Yb3+[Zn(II)MC (QXA)] complexes, which isolate the RE ion from the environment and suppress nonradiative decay channels. We demonstrate that the beneficial optical transitions of the Yb3+ are retained after deposition on the tapered fiber and observe an excited-state lifetime of over 0.9 ms, on par with state-of-the-art Yb-doped inorganic crystals.
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