论文标题

从机械应力的离子集合的不均匀反应

Inhomogeneous response of an ion ensemble from mechanical stress

论文作者

Zhang, S., Galland, N., Lučić, N., Targat, R. Le, Ferrier, A., Goldner, P., Fang, B., Coq, Y. Le, Seidelin, S.

论文摘要

最近,材料菌株作为一种互补的资源而受到越来越多的关注,以控制嵌入固态环境中的量子发射器的能级。一些稀土离子掺杂剂提供了光学过渡,同时具有狭窄的线宽,并且对应变高度敏感。在这样的系统中,光谱孔燃烧的技术,其中透明窗口在较大的不均匀剖面中燃烧,可以从狭窄的特征中受益,狭窄的特征对应变也很敏感,同时使用大型离子。但是,与合奏的合作可能会导致不同离子之间的不均匀反应。我们通过实验研究狭窄的光谱孔的形状是如何由于外部机械应变而修改的,尤其是孔扩展,孔的函数是晶体位点的几何形状和沿着应力的晶体轴的函数。研究这些效果对于优化稀土掺杂晶体的现有应用至关重要,这些晶体已经从已经从这些掺杂剂(例如频率计量学和量子信息处理)的更加公认的连贯性能中获利,甚至建议这些材料的新颖应用,例如,作为强大的设备用于强大的设备,用于力量或高度敏感的Accelive AcceLement Accelemeters。

Material strain has recently received growing attention as a complementary resource to control the energy levels of quantum emitters embedded inside a solid-state environment. Some rare-earth ion dopants provide an optical transition which simultaneously has a narrow linewidth and is highly sensitive to strain. In such systems, the technique of spectral hole burning, in which a transparent window is burnt within the large inhomogeneous profile, allows to benefit from the narrow features, which are also sensitive to strain, while working with large ensembles of ions. However, working with ensembles may give rise to inhomogeneous responses among different ions. We investigate experimentally how the shape of a narrow spectral hole is modified due to external mechanical strain, in particular, the hole broadening as a function of the geometry of the crystal sites and the crystalline axis along which the stress is applied. Studying these effects are essential in order to optimize the existing applications of rare-earth doped crystals in fields which already profit from the more well-established coherence properties of these dopants such as frequency metrology and quantum information processing, or even suggest novel applications of these materials, for example as robust devices for force-sensing or highly sensitive accelerometers.

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