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Superconductor01:24

Superconductor

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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...
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Theory of Metallic Conduction01:17

Theory of Metallic Conduction

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The conduction of free electrons inside a conductor is best described by quantum mechanics. However, a classical model makes predictions close to the results of quantum mechanics. It is called the theory of metallic conduction.
In this theory, Newton's second law of motion is used to determine the acceleration of an electron in the presence of an applied electric field. Then, its velocity is expressed via this acceleration.
An electron moves through the crystal, containing positive ions,...
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Types Of Superconductors01:28

Types Of Superconductors

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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...
944
Molecular and Ionic Solids02:54

Molecular and Ionic Solids

17.0K
Crystalline solids are divided into four types: molecular, ionic, metallic, and covalent network based on the type of constituent units and their interparticle interactions.
Molecular Solids
Molecular crystalline solids, such as ice, sucrose (table sugar), and iodine, are solids that are composed of neutral molecules as their constituent units. These molecules are held together by weak intermolecular forces such as London dispersion forces, dipole-dipole interactions, or hydrogen bonds, which...
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Coulomb's Law and The Principle of Superposition01:15

Coulomb's Law and The Principle of Superposition

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Coulomb's Law describes the force experienced by two point charges under each other's presence. But what if there are more than two charges? For example, if there is a third charge, does it experience a force that is a simple combination of the individual forces due to the first two charges? Can it be described mathematically?
The Principle of Superposition answers the question. Yes, Coulomb's Law applies to each pair of charges, and the net force on each charge is the vector sum of...
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The de Broglie Wavelength02:32

The de Broglie Wavelength

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In the macroscopic world, objects that are large enough to be seen by the naked eye follow the rules of classical physics. A billiard ball moving on a table will behave like a particle; it will continue traveling in a straight line unless it collides with another ball, or it is acted on by some other force, such as friction. The ball has a well-defined position and velocity or well-defined momentum, p = mv, which is defined by mass m and velocity v at any given moment. This is the typical...
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计算式电子-声波超导:从理论物理学到材料科学

Shiya Chen1, Feng Zheng2, Zhen Zhang3

  • 1Department of Physics, Xiamen University, Xiamen 361005, People's Republic of China.

Journal of physics. Condensed matter : an Institute of Physics journal
|September 30, 2024
PubMed
概括

研究人员正在探索室温超导体的新材料,重点是化物和其他化合物中的电子声波合 (EPC). 计算领域的进步有助于寻找高温超导 (SC).

关键词:
计算材料科学 计算材料科学材料的发现发现.超导性是一种超导性.

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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
  • 计算物理 计算物理

背景情况:

  • 寻找室温超导体 (RTS) 仍然是物理学中的一个重大挑战.
  • 氧化铜超导体 (1986) 呈现出复杂的机制,与金属中的电子音声合 (EPC) 不同.
  • 自2015年以来,EPC在高压下使化合物在室温超导 (SC) 成为可能.

研究的目的:

  • 在2023-2024年审查新预测的超导系统.
  • 专注于化物,碳系统和含有,碳和纯金属的化合物.
  • 讨论计算进步在材料发现中的作用.

主要方法:

  • 对超导材料最近的计算预测进行了审查.
  • 基于电子声波合 (EPC) 的系统的分析.
  • 检查用于材料勘探的超大规模计算的进步.

主要成果:

  • 许多新的超导系统,特别是化物,在2023-2024年被计算预测.
  • 专注于材料,如碳系统和含有,碳和金属的化合物.
  • 虽然许多高Tc预测仍然未得到证实,但一些低温超导体已经成功合成.

结论:

  • 电子-声子合 (EPC) 仍然是实现超导 (SC) 的可行机制,特别是在富含的化合物中.
  • 计算能力正在加速新型超导材料的发现.
  • 需要进一步的研究来弥合理论预测和实验合成之间的差距,特别是对于高温应用.