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相关概念视频

Types Of Superconductors01:28

Types Of Superconductors

903
A superconductor is a substance that offers zero resistance to the electric current when it drops below a critical temperature. Zero resistance is not the only interesting phenomenon as materials reach their transition temperatures. A second effect is the exclusion of magnetic fields. This is known as the Meissner effect. A light, permanent magnet placed over a superconducting sample will levitate in a stable position above the superconductor. High-speed trains that levitate on strong...
903
Superconductor01:24

Superconductor

1.0K
A substance that reaches superconductivity, a state in which magnetic fields cannot penetrate, and there is no electrical resistance, is referred to as a superconductor. In 1911, Heike Kamerlingh Onnes of Leiden University, a Dutch physicist, observed a relation between the temperature and the resistance of the element mercury. The mercury sample was then cooled in liquid helium to study the linear dependence of resistance on temperature. It was observed that, as the temperature decreased, the...
1.0K
Crystal Field Theory - Octahedral Complexes02:58

Crystal Field Theory - Octahedral Complexes

25.9K
Crystal Field Theory
To explain the observed behavior of transition metal complexes (such as colors), a model involving electrostatic interactions between the electrons from the ligands and the electrons in the unhybridized d orbitals of the central metal atom has been developed. This electrostatic model is crystal field theory (CFT). It helps to understand, interpret, and predict the colors, magnetic behavior, and some structures of coordination compounds of transition metals.
CFT focuses on...
25.9K
Crystal Field Theory - Tetrahedral and Square Planar Complexes02:46

Crystal Field Theory - Tetrahedral and Square Planar Complexes

41.0K
Tetrahedral Complexes
Crystal field theory (CFT) is applicable to molecules in geometries other than octahedral. In octahedral complexes, the lobes of the dx2−y2 and dz2 orbitals point directly at the ligands. For tetrahedral complexes, the d orbitals remain in place, but with only four ligands located between the axes. None of the orbitals points directly at the tetrahedral ligands. However, the dx2−y2 and dz2 orbitals (along the Cartesian axes) overlap with the ligands less than...
41.0K
Electric Field Inside a Conductor01:20

Electric Field Inside a Conductor

5.8K
When a conductor is placed in an external electric field, the free charges in the conductor redistribute and very quickly reach electrostatic equilibrium. The resulting charge distribution and its electric field have many interesting properties, which can be investigated with the help of Gauss's law.
Suppose a piece of metal is placed near a positive charge. The free electrons in the metal are attracted to the external positive charge and migrate freely toward that region. This region then...
5.8K
Electric Field at the Surface of a Conductor01:26

Electric Field at the Surface of a Conductor

4.6K
Consider a conductor in electrostatic equilibrium. The net electric field inside a conductor vanishes, and extra charges on the conductor reside on its outer surface, regardless of where they originate.
In the 19th century, Michael Faraday conducted the famous ice pail experiment to prove that the charges always reside on the surface of a conductor. The experimental set-up consists of a conducting uncharged container mounted on an insulating stand. The outer surface of the container is...
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相关实验视频

Updated: May 20, 2025

Comparison of Two Different Synthesis Methods of Single Crystals of Superconducting Uranium Ditelluride
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Comparison of Two Different Synthesis Methods of Single Crystals of Superconducting Uranium Ditelluride

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在UTe_{2}中连接高场和高压超导.

T Vasina1, D Aoki2, A Miyake2

  • 1Grenoble INP, CEA, Université Grenoble Alpes, IRIG, PHELIQS, F-38000 Grenoble, France.

Physical review letters
|March 25, 2025
PubMed
概括

研究了二甲 (UTe2) 中多个超导相. 高电场相位过渡到压力下的零电场,高温相位,揭示了超导相位图的持续演变.

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Visualizing Uniaxial-strain Manipulation of Antiferromagnetic Domains in Fe1+YTe Using a Spin-polarized Scanning Tunneling Microscope
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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
  • 超导电性 超导电性 超导电性

背景情况:

  • 二甲 (UTe2) 具有不寻常的超导特性,包括多个超导相.
  • 了解压力,磁场和UTe2中的超导之间的相互作用至关重要.

研究的目的:

  • 在压力和磁场组合下全面绘制UTe2的超导相图.
  • 研究UTe2.2中不同超导相的演变.

主要方法:

  • 在UTe2.2上进行了热力学测量.
  • 这些实验结合了水静电压和高磁场,高达30特斯拉.

主要成果:

  • 在环境压下的高场超导相和0.2GPa以上的零场,高温超导相之间观察到一个连续的演变.
  • 该研究揭示了UTe2.2的详细超导相图.

结论:

  • UTe2 的超导相图对压力和磁场都非常敏感.
  • 这些发现为UTe2中的超导性及其多个相的复杂性提供了新的见解.