Ichikawa Takuto, Guo Junjie, Fons Paul, Prananto Dwi, An Toshu, Hase Muneaki
Department of Applied Physics, Faculty of Pure and Applied Sciences, University of Tsukuba, Tsukuba, Ibaraki, Japan.
Sensing System Research Center, National Institute of Advanced Industrial Science and Technology, Tosu, Saga, Japan.
Nat Commun. 2024 Aug 30;15(1):7174. doi: 10.1038/s41467-024-51366-x.
Polarons can control carrier mobility and can also be used in the design of quantum devices. Although much effort has been directed into investigating the nature of polarons, observation of defect-related polarons is challenging due to electron-defect scattering. Here we explore the polaronic behavior of nitrogen-vacancy (NV) centers in a diamond crystal using an ultrafast pump-probe technique. A 10-fs optical pulse acts as a source of high electric field exceeding the dielectric breakdown threshold, in turn exerting a force on the NV charge distribution and polar optical phonons. The electronic and phononic responses are enhanced by an order of magnitude for a low density of NV centers, which we attribute to a combination of cooperative polaronic effects and scattering by defects. First-principles calculations support the presence of dipolar Fröhlich interaction via non-zero Born effective charges. Our findings provide insights into the physics of color centers in diamonds.
极化子可以控制载流子迁移率,还可用于量子器件设计。尽管人们在研究极化子的性质方面付出了很多努力,但由于电子-缺陷散射,观察与缺陷相关的极化子具有挑战性。在此,我们使用超快泵浦-探测技术研究了金刚石晶体中氮空位(NV)中心的极化子行为。一个10飞秒的光脉冲作为超过介电击穿阈值的高电场源,进而对NV电荷分布和极性光学声子施加力。对于低密度的NV中心,电子和声子响应增强了一个数量级,我们将其归因于协同极化子效应和缺陷散射的综合作用。第一性原理计算通过非零的玻恩有效电荷支持偶极弗罗利希相互作用的存在。我们的研究结果为金刚石中色心的物理特性提供了见解。