Reconstruction of vector static magnetic field by different axial NV centers using continuous wave optically detected magnetic resonance in diamond

Reconstruction of vector static magnetic field by different axial NV centers using continuous wave optically detected magnetic resonance in diamond

论文摘要

We carried out a proof-of-principle demonstration of the reconstruction of a static vector magnetic field involving adjacent three nitrogen-vacancy(NV) sensors with corresponding different NV symmetry axes in a bulk diamond. By means of optical detection of the magnetic resonance(ODMR) techniques, our experiment employs the continuous wave(CW) to monitor resonance frequencies and it extracts the information of the detected field strength and polar angles with respect to each NV frame of reference. Finally, the detected magnetic field relative to a fixed laboratory reference frame was reconstructed from the information acquired by the multi-NV sensor.

论文目录

文章来源

类型: 期刊论文

作者: 叶剑锋,焦铮,马堃,黄志永,吕海江,蒋峰建

来源: Chinese Physics B 2019年04期

年度: 2019

分类: 基础科学,工程科技Ⅰ辑

专业: 化学

单位: School of Information Engineering, Huangshan University

基金: Project supported by the National Natural Science Foundation of China(Grant Nos.11305074,11135002,11804112,and 11275083),the Key Program of the Education Department Outstanding Youth Foundation of Anhui Province,China(Grant No.gxyqZD2017080),the Natural Science Foundation of Anhui Province,China(Grant No.KJHS2015B09),the Open Fund of Anhui Ley Laboratory for Condensed Matter Physics under Extreme Conditions and CAS Key Laboratory of Microscale Magnetic Resonance(Grant No.KLMMR201804),the Fund of Scientific Research Platform of Huangshan University

分类号: O613.71

页码: 341-345

总页数: 5

文件大小: 571K

下载量: 16

相关论文文献

  • [1].Collapses-revivals phenomena induced by weak magnetic flux in diamond chain[J]. Chinese Physics B 2020(01)
  • [2].A new technology for controlling in-situ oxygen fugacity in diamond anvil cells and measuring electrical conductivity of anhydrous olivine at high pressures and temperatures[J]. Chinese Physics B 2020(01)
  • [3].Influences of grain size and microstructure on optical properties of microcrystalline diamond films[J]. Chinese Physics B 2020(01)
  • [4].Magnetic field enhanced radio frequency ion source and its application for Siincorporation diamond-like carbon film preparation[J]. Plasma Science and Technology 2020(02)
  • [5].Karite-diamond fossil:A new type of natural diamond[J]. Geoscience Frontiers 2020(04)
  • [6].Superior mechanical and thermal properties than diamond:Diamond/lonsdaleite biphasic structure[J]. Journal of Materials Science & Technology 2020(13)
  • [7].A critical review on the chemical wear and wear suppression of diamond tools in diamond cutting of ferrous metals[J]. International Journal of Extreme Manufacturing 2020(01)
  • [8].Growth behavior of CVD diamond films with enhanced electron field emission properties over a wide range of experimental parameters[J]. Journal of Materials Science & Technology 2018(12)
  • [9].Spin dynamics characteristics of nitrogen vacancy spins in diamond films using enhanced Raman shift with spin microscopy[J]. Progress in Natural Science:Materials International 2018(05)
  • [10].Photoluminescence of SiV centers in CVD diamond particles with specific crystallographic planes[J]. Chinese Physics B 2019(01)
  • [11].Inclusions in large diamond single crystals at different temperatures of synthesis[J]. Chinese Physics B 2019(02)
  • [12].Recent progress in diamond-based MOSFETs[J]. International Journal of Minerals Metallurgy and Materials 2019(10)
  • [13].A brief review of brazing diamond in cutting tools[J]. China Welding 2019(02)
  • [14].Epitaxial growth of diamond single crystal on surface of milled diamond seeds at high pressure and high temperature[J]. 金刚石与磨料磨具工程 2017(06)
  • [15].Polycrystalline diamond compact with enhanced thermal stability[J]. Journal of Materials Science & Technology 2017(11)
  • [16].Synthesis of strong SiV photoluminescent diamond particles on silica optical fiber by chemical vapor deposition[J]. Chinese Physics B 2018(03)
  • [17].Highly sensitive electrochemical detection of living cells based on diamond microelectrode arrays[J]. Chinese Chemical Letters 2018(06)
  • [18].Effect of FeS doping on large diamond synthesis in FeNi-C system[J]. Chinese Physics B 2018(08)
  • [19].FEM thermal analysis of high power GaN-on-diamond HEMTs[J]. Journal of Semiconductors 2018(10)
  • [20].High thermal stability of diamond-cBN-B_4C-Si composites[J]. Chinese Physics B 2017(01)
  • [21].Rapidly Synthesis of Nanocrystalline Diamond Films by Helicon Wave Plasma[J]. 功能材料信息 2016(02)
  • [22].Carrier transport characteristics of H-terminated diamond films prepared using molecular hydrogen and atomic hydrogen[J]. International Journal of Minerals Metallurgy and Materials 2017(07)
  • [23].A novel approach of deposition for uniform diamond films on circular saw blades[J]. Plasma Science and Technology 2017(11)
  • [24].Optical characterization of single-crystal diamond grown by DC arc plasma jet CVD[J]. International Journal of Minerals Metallurgy and Materials 2017(12)
  • [25].Effects of catalyst height on diamond crystal morphology under high pressure and high temperature[J]. Chinese Physics B 2016(04)
  • [26].Thermal properties of diamond/Al composites by pressure infiltration:comparison between methods of coating Ti onto diamond surfaces and adding Si into Al matrix[J]. Rare Metals 2016(03)
  • [27].Effects of Mg on diamond growth and properties in Fe–C system under high pressure and high temperature condition[J]. Chinese Physics B 2016(08)
  • [28].Enhanced mechanical properties in Al/diamond composites by Si addition[J]. Rare Metals 2016(09)
  • [29].Large single crystal diamond grown in FeNiMnCo-S-C system under high pressure and high temperature conditions[J]. Chinese Physics B 2016(11)
  • [30].Fabrication and characteristics of nitrogen-doped nanocrystalline diamond/p-type silicon heterojunction[J]. Nano-Micro Letters 2010(01)
Reconstruction of vector static magnetic field by different axial NV centers using continuous wave optically detected magnetic resonance in diamond
下载Doc文档

猜你喜欢