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Optical and spin properties of nitrogen vacancy centers in bulk and nanocrystalline diamond

机译:纳米金刚石中氮空位中心的光学和自旋特性

摘要

The NV center is becoming a very hot topic in many areas of science, including, Physics, Chemistry, Biology, and Quantum Information. The Degen group has focused on a specific application of the NV center, namely scanning magnetometry. In my time in the group, I focused on building a microscope and studying NV centers in bulk and nanocrystalline diamond. I began by building a confocal microscope which was capable of observing and determine single NV centers. I made measurements on the photon statistics of different defects to determine if they were single emitters or multiple emitters. I also made microwave frequency magnetic measurements to determine the spin properties of single NV centers by measuring their couplings to neighboring paramagnetic nuclei as well as to a spin bath. Through these efforts, I was able to successfully confirm that the microscope was capable of identifying and measuring single NV centers and their properties. Lastly, I worked on the first steps of improving our understanding of NV centers in bulk diamond crystals. The goal of magnetometry involves putting the NV center as close to the diamond surface as possible. I made measurements that were aimed at studying the spin and coherence properties of the NV when it was within 10 nm of the diamond surface. These studies provided insight into the interactions of the NV center with the diamond surface.
机译:NV中心正在成为许多科学领域的热门话题,包括物理,化学,生物学和量子信息。 Degen小组专注于NV中心的特定应用,即扫描磁力计。在小组期间,我专注于建立显微镜并研究大块和纳米晶金刚石的NV中心。我首先建立了一个共聚焦显微镜,该显微镜能够观察和确定单个NV中心。我对不同缺陷的光子统计数据进行了测量,以确定它们是单个发射器还是多个发射器。我还进行了微波频率磁测量,以通过测量单个NV中心与相邻顺磁核以及自旋浴的耦合来确定其自旋特性。通过这些努力,我能够成功地确认该显微镜能够识别和测量单个NV中心及其特性。最后,我从事了第一步,以增进我们对散装钻石晶体中NV中心的了解。磁力计的目标包括使NV中心尽可能靠近钻石表面。我进行了一些测量,旨在研究NV在金刚石表面10 nm以内时的自旋和相干特性。这些研究提供了对NV中心与钻石表面相互作用的见解。

著录项

  • 作者

    Ofori-Okai Benjamin Kwasi;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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