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相关概念视频

Types Of Superconductors01:28

Types Of Superconductors

921
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...
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Metal-Semiconductor Junctions01:24

Metal-Semiconductor Junctions

281
The contact of metal and semiconductor can lead to the formation of a junction with either Schottky or Ohmic behavior.
Schottky Barriers
Schottky barriers arise when a metal with a work function (Φm) contacts a semiconductor with a different work function (Φs). Initially, electrons transfer until the Fermi levels of the metal and semiconductor align at equilibrium. For instance, if Φm > Φs, the semiconductor Fermi level is higher than the metal's before contact. The...
281
Non-ohmic Devices00:51

Non-ohmic Devices

1.0K
In most substances, the current flow is proportional to the voltage applied to it. A simple relationship between the values of current, voltage, and resistance is known as Ohm's law. Nonohmic devices do not exhibit a linear relationship between voltage and current. One such device is the semiconducting circuit element known as a diode. A diode is a circuit device that allows current flow in only one direction.
Consider a simple circuit consisting of a battery, a diode, and a resistor. A...
1.0K
MOSFET: Enhancement Mode01:22

MOSFET: Enhancement Mode

264
Enhancement-mode MOSFETs are pivotal components in electronics, distinguished by their capacity to act as highly efficient switches. They are part of the larger family of metal-oxide Semiconductor Field-Effect Transistors (MOSFETs). They are available in two types: p-channel and n-channel, each tailored to specific polarity operations.
In their basic form, enhancement-mode MOSFETs are typically non-conductive when the gate-source voltage (Vgs) is zero. This default 'off' state means no...
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Ferromagnetism01:31

Ferromagnetism

2.4K
Materials like iron, nickel, and cobalt consist of magnetic domains, within which the magnetic dipoles are arranged parallel to each other. The magnetic dipoles are rigidly aligned in the same direction within a domain by quantum mechanical coupling among the atoms. This coupling is so strong that even thermal agitation at room temperature cannot break it. The result is that each domain has a net dipole moment. However, some materials have weaker coupling, and are ferromagnetic at lower...
2.4K
Superconductor01:24

Superconductor

1.1K
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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在磁性半导体中电可切换的纵向非线性导电性.

Hong Jian Zhao1,2,3, Yuhao Fu1, Yurong Yang4

  • 1Jilin University, Key Laboratory of Material Simulation Methods and Software of Ministry of Education, College of Physics, Changchun 130012, China.

Physical review letters
|February 14, 2025
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概括

研究人员发现了一种使用电场来写数据的新方法,使节能存储器件成为可能. 这种方法利用各种磁性材料中的可切换纵向非线性导电性 (LNC),超越了传统的磁电效应.

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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
  • 这就是Spintronics.

背景情况:

  • 电场数据写入有望节能存储,但受到室温磁电材料狭窄范围的限制.
  • 探索低功耗内存的替代机制对于技术进步至关重要.

研究的目的:

  • 提出和研究一种用于超越磁电效应的电场数据写入的新机制.
  • 为了证明纵向非线性导电性 (LNC) 在低功耗内存应用中的潜力.

主要方法:

  • 对称性分析以识别表现出电场诱导LNC的材料.
  • 第一原则模拟和运输计算,以预测和验证特定材料中的LNC.
  • 实验运输测量以检测切换的LNC.

主要成果:

  • 电场可以在广泛的磁性材料中诱导纵向非线性导电性 (LNC),包括铁磁体,反铁磁体,磁电和非磁电.
  • 诱导的LNC可以通过逆转电场方向来进行电气切换.
  • 预计YFeO_{3}和CuFeS_{2},这两种室温反铁磁体都会显示可切换的LNC.

结论:

  • 电转换式LNC的发现为设计节能存储器件提供了新的途径.
  • 这项工作扩大了非线性电荷传输的研究,并提供了低功耗数据存储的机制.
  • 拟议的机制适用于广泛的磁性材料,提高了设计灵活性.