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相关概念视频

Potential Due to a Polarized Object01:29

Potential Due to a Polarized Object

378
A neutral atom consists of a positively charged nucleus surrounded by a negatively charged electron cloud. When placed in an external electric field, the external electric force pulls the electrons and nucleus apart, opposite to the intrinsic attraction between the nucleus and the electrons. The opposing forces balance each other with a slight shift between the center of masses of the nucleus and the electron cloud, resulting in a polarized atom. On the other hand, a few molecules, like water,...
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Dielectric Polarization in a Capacitor01:31

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The presence of a dielectric medium in a capacitor not only changes the voltage and capacitance but also affects the electric field. In general, dielectrics can be of two types: polar and nonpolar. In a polar dielectric, the positive and negative charges in the molecules are separated by a distance and hence have a permanent dipole moment. In contrast, no such charge separation exists in a nonpolar dielectric, however the nonpolar molecules get polarized in the presence of an external electric...
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Biasing of Metal-Semiconductor Junctions01:27

Biasing of Metal-Semiconductor Junctions

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Biasing metal-semiconductor junctions involves applying a voltage across the junction. Specifically, the metal is connected to a voltage source, while the semiconductor is grounded. This technique is essential for controlling the direction and magnitude of current flow in electronic devices, including diodes, transistors, and photovoltaic cells.
In Schottky junctions, where the semiconductor is n-type, applying a positive voltage to the metal relative to the semiconductor reduces its Fermi...
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Induced Electric Dipoles01:28

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A permanent electric dipole orients itself along an external electric field. This rotation can be quantified by defining the potential energy because the external torque does work in rotating it. Then, the potential energy is minimum at the parallel configuration and maximum at the antiparallel configuration. While the former is a stable equilibrium, the latter is an unstable equilibrium.
Since the absolute value of potential energy holds no physical meaning, its zero value can be chosen as per...
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相关实验视频

Updated: Jun 18, 2025

Demonstration of Spin-Multiplexed and Direction-Multiplexed All-Dielectric Visible Metaholograms
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在芯片上的极化旋转器使用地表表面.

Dura Shahwar1,2, Markku Kapulainen1, Tomi Haatainen1

  • 1VTT Technical Research Centre of Finland Ltd, Tietotie 3, 02150 Espoo, Finland.

ACS omega
|August 5, 2024
PubMed
概括
此摘要是机器生成的。

我们开发了新的金色超表面,以有效控制广角光极化. 这一突破使得集成光子学的紧,宽带,低损耗的芯片极化旋转器成为可能.

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科学领域:

  • 光学和光子学 在光学和光子学.
  • 材料科学 材料科学 材料科学
  • 纳米技术纳米技术

背景情况:

  • 超表面为光极化提供了先进的控制.
  • 传统的超表面往往缺乏宽带操作和广泛的接收角度.
  • 对于微型光学设备来说,与光子学的集成至关重要.

研究的目的:

  • 设计和演示用于宽带偏振操纵的创新的基于黄金的超表面.
  • 为了在广泛的入射角度上实现高极化转换效率.
  • 实现一个紧的,低损耗的芯片上的偏振旋转器,集成与波导.

主要方法:

  • 在一个有反射镜的在绝缘体平台上制造黄金元表面.
  • 在自由空间和芯片上对地表极化转换效率和灭绝率的表征.
  • 宽带光谱测量以评估设备在广泛波长范围内的性能.

主要成果:

  • 超表面装置在1550 nm时实现了高达98.5%的极化转换效率.
  • 超表面波板在120nm带宽上表现出超过15dB的灭绝比率.
  • 芯片上的偏振旋转器显示,100 nm带宽的灭绝比>10 dB.

结论:

  • 这项研究介绍了第一个成功的芯片上的偏振操纵,使用了超表面集成.
  • 开发的超表面使得紧,宽带和低损失的极化旋转器成为可能.
  • 这项技术在推进光子集成电路方面具有重大潜力.