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相关概念视频

Nuclear Stability03:18

Nuclear Stability

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Protons and neutrons, collectively called nucleons, are packed together tightly in a nucleus. With a radius of about 10−15 meters, a nucleus is quite small compared to the radius of the entire atom, which is about 10−10 meters. Nuclei are extremely dense compared to bulk matter, averaging 1.8 × 1014 grams per cubic centimeter. If the earth’s density were equal to the average nuclear density, the earth’s radius would be only about 200 meters.
To hold positively charged protons together...
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Atomic Nuclei: Magnetic Resonance01:05

Atomic Nuclei: Magnetic Resonance

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The number of nuclear spins aligned in the lower energy state is slightly greater than those in the higher energy state. In the presence of an external magnetic field, as the spins precess at the Larmor frequency, the excess population results in a net magnetization oriented along the z axis. When a pulse or a short burst of radio waves at the Larmor frequency is applied along the x axis, the coupling of frequencies causes resonance and flips the nuclear spins of the excess population from the...
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Atomic Nuclei: Types of Nuclear Relaxation01:28

Atomic Nuclei: Types of Nuclear Relaxation

274
Nuclear relaxation restores the equilibrium population imbalance and can occur via spin–lattice or spin–spin mechanisms, which are first-order exponential decay processes.
In spin–lattice or longitudinal relaxation, the excited spins exchange energy with the surrounding lattice as they return to the lower energy level. Among several mechanisms that contribute to spin–lattice relaxation, magnetic dipolar interactions are significant. Here, the excited nucleus transfers...
274
High-Resolution Mass Spectrometry (HRMS)01:15

High-Resolution Mass Spectrometry (HRMS)

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The resolution of a mass spectrometer depends on the efficiency of separating ions with different ion masses. The mass of an atom is approximated to the sum of the masses of protons and neutrons inside, considering the masses of protons and neutrons as equal. However, the masses of the proton (1.6726 × 10−24 g) and neutron (1.6749 × 10−24 g) are not truly equal. There is a minor error in the expression of atomic masses relative to the simplest atom of hydrogen. For...
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Atomic Nuclei: Nuclear Spin State Population Distribution01:14

Atomic Nuclei: Nuclear Spin State Population Distribution

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Near absolute zero temperatures, in the presence of a magnetic field, the majority of nuclei prefer the lower energy spin-up state to the higher energy spin-down state. As temperatures increase, the energy from thermal collisions distributes the spins more equally between the two states. The Boltzmann distribution equation gives the ratio of the number of spins predicted in the spin −½ (N−) and spin +½ (N+) states.
964
NMR Spectrometers: Resolution and Error Correction01:14

NMR Spectrometers: Resolution and Error Correction

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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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Studying Soft-matter and Biological Systems over a Wide Length-scale from Nanometer and Micrometer Sizes at the Small-angle Neutron Diffractometer KWS-2
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响应中子散射长度的共振中子散射长度.

Robert B Von Dreele1

  • 1Advanced Photon Source Argonne National Laboratory 9700 South Cass Avenue Lemont IL60439-4814 USA.

Journal of applied crystallography
|August 7, 2024
PubMed
概括

稀土元素表现出显著的共振中子散射,使射研究能够进行,尽管吸收强. 布雷特-维格纳模型使用现代中子源准确计算了这些元素的散射强度.

科学领域:

  • 凝聚物质物理学 凝聚物质物理学
  • 材料科学 材料科学 材料科学
  • 核物理 核物理 核物理

背景情况:

  • 大多数元素具有可预测的中子散射,但稀土表现出独特的共振散射.
  • 这种共振散射通常与高中子吸收相结合,这给实验带来了挑战.

研究的目的:

  • 为了实现与稀土元素的中子衍射实验.
  • 为准确确定稀土中子散射强度提供计算方法.

主要方法:

  • 使用高强度中子源进行衍射实验.
  • 应用半实证的布雷特-维格纳形式主义来建模共振散射长度 (b0,b',b'').
  • 在典型的中子能量范围 (10-600 meV) 和波长范围 (0.4-2.8 Å) 上评估模型.

主要成果:

  • 证明了用稀土元素进行中子衍射实验的可行性.
  • 通过使用布雷特-维格纳模型,成功安装了共振散射长度变化.
  • 建立了一种可靠的方法来计算适用于广泛的中子能量和波长的散射强度.

结论:

  • 中子衍射是研究稀土元素的可行技术.
关键词:
布莱特·维格纳的公式稀土是一种稀土.响应中子散射长度的共振中子散射长度.

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  • 布雷特-维格纳形式主义提供了一种有效的方法来量化稀土中的共振中子散射.
  • 这项工作有助于进一步研究稀土材料的结构和磁性特性.