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利用光谱烧孔研究制备方法对掺铥钇铝石榴石粉末中自旋弛豫和微晶质量的影响。

Effects of fabrication methods on spin relaxation and crystallite quality in Tm-doped YAIO powders studied using spectral hole burning.

作者信息

Lutz Thomas, Veissier Lucile, Thiel Charles W, Woodburn Philip J T, Cone Rufus L, Barclay Paul E, Tittel Wolfgang

机构信息

Department of Physics & Astronomy, Institute for Quantum Science and Technology, University of Calgary , Calgary Alberta , T2N 1N4 Canada .

Department of Physics, Montana State University , Bozeman , MT , 59717 USA .

出版信息

Sci Technol Adv Mater. 2016 Mar 16;17(1):63-70. doi: 10.1080/14686996.2016.1148528. eCollection 2016.

Abstract

High-quality rare-earth-ion (REI) doped materials are a prerequisite for many applications such as quantum memories, ultra-high-resolution optical spectrum analyzers and information processing. Compared to bulk materials, REI doped powders offer low-cost fabrication and a greater range of accessible material systems. Here we show that crystal properties, such as nuclear spin lifetime, are strongly affected by mechanical treatment, and that spectral hole burning can serve as a sensitive method to characterize the quality of REI doped powders. We focus on the specific case of thulium doped YAIO (Tm:YAG). Different methods for obtaining the powders are compared and the influence of annealing on the spectroscopic quality of powders is investigated on a few examples. We conclude that annealing can reverse some detrimental effects of powder fabrication and, in certain cases, the properties of the bulk material can be reached. Our results may be applicable to other impurities and other crystals, including color centers in nano-structured diamond.

摘要

高质量的稀土离子(REI)掺杂材料是许多应用的先决条件,如量子存储器、超高分辨率光谱分析仪和信息处理。与块状材料相比,REI掺杂粉末具有低成本制造和更广泛的可获取材料体系的优点。在此我们表明,诸如核自旋寿命等晶体特性会受到机械处理的强烈影响,并且光谱烧孔可作为表征REI掺杂粉末质量的灵敏方法。我们聚焦于掺铥钇铝石榴石(Tm:YAG)的具体情况。比较了获得粉末的不同方法,并通过几个实例研究了退火对粉末光谱质量的影响。我们得出结论,退火可以逆转粉末制造过程中的一些有害影响,并且在某些情况下,可以达到块状材料的性能。我们的结果可能适用于其他杂质和其他晶体,包括纳米结构金刚石中的色心。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cfdc/5127178/5a9dddab7d60/tsta_a_1148528_uf0001_oc.jpg

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