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相关概念视频

¹³C NMR: Distortionless Enhancement by Polarization Transfer (DEPT)01:20

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When proton-coupled carbon-13 spectra are simplified by a broadband proton decoupling technique, structural information about the coupled protons is lost. Distortionless enhancement by polarization transfer (DEPT) is a technique that provides information on the number of hydrogens attached to each carbon in a molecule. While the DEPT experiment utilizes complex pulse sequences, the pulse delay and flip angle are specifically manipulated. The resulting signals have different phases depending on...
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NMR Spectrometers: Resolution and Error Correction01:14

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When magnetic nuclei in a sample achieve resonance and undergo relaxation, the signal detected in NMR is an approximately exponential free induction decay. Fourier transform of an exponential decay yields a Lorentzian peak in the frequency domain. Lorentzian peaks in an NMR spectrum are defined by their amplitude, full width at half maximum, and position, where the peak width is governed by the spin-spin relaxation time alone. In real experiments, however, the applied magnetic field is rendered...
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绘制地图极地扭曲使用波束电子衍射和一个 Cepstral 方法.

Megan E Holtz1,2,3, Elliot Padgett2, Aaron C Johnston-Peck1

  • 1Material Measurement Laboratory, National Institute of Standards and Technology, 100 Bureau Drive, Gaithersburg, MD 20899, USA.

Microscopy and microanalysis : the official journal of Microscopy Society of America, Microbeam Analysis Society, Microscopical Society of Canada
|July 25, 2023
PubMed
概括

这项研究引入了一种新的cepstral方法,可以使用扫描纳米束电子衍射 (NBED) 精确测量铁电薄膜中的局部极性排序. 该技术实现了纳米分辨率和皮科米准确度,用于绘制铁电位移的地图.

关键词:
在4D STEM中,铁电器 铁电器 铁电器纳米光束电子 difraktion 的电子.

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科学领域:

  • 材料科学 材料科学 材料科学
  • 凝聚物质物理学 凝聚物质物理学
  • 晶体学 晶体学是指结晶学.

背景情况:

  • 精确测量局部极点排序对于理解薄膜中的铁电,特别是具有小域或无序的薄膜中的铁电是至关重要的.
  • 扫描纳米束电子衍射 (NBED) 是一种强大的工具,用于探测材料中的局部晶格参数,场和极化.
  • 从NBED数据中量化极化向量存在重大挑战.

研究的目的:

  • 开发一种可靠的方法,从NBED模式中量化提取极化向量的大小和方向.
  • 为了能够精确地绘制当地极地位移的地图,在薄膜中驱动铁电.
  • 克服分析复杂铁电系统的现有方法的局限性.

主要方法:

  • 使用一个 cepstral 分析方法,类似于对分布函数,应用于 NBED 模式.
  • 利用极性扭曲引起的衍射图形强度的不对称性.
  • 从塞普斯特姆变换的虚构部分中恢复底层极移.

主要成果:

  • 证明了从NBED数据中精确确定局部极移的能力.
  • 在测量中达到前所未有的精度约为1.1皮科米.
  • 在实验样本中成功地绘制了纳米分辨率的极地位移图.

结论:

  • 塞普斯特尔方法提供了一种有效和准确的方法来从NBED量化铁电极化.
  • 这种技术显著推进了纳米级和无序系统中铁电的研究.
  • 这些发现为改善先进铁电材料的特性和理解铺平了道路.