BGE:带隙工程
“Band Gap Engineering”在电子学等学术与科学领域常被缩写为BGE,这种简写形式便于快速书写和日常使用。其核心概念“带隙工程”指的是通过调控材料的能带结构,以实现特定的光电性能,广泛应用于半导体器件和功能材料的设计中。
Band Gap Engineering具体释义
Band Gap Engineering的英文发音
例句
- Polymer band gap engineering is a new field on semiconducting polymers research. It is important for applications of semiconducting polymers and improvement of properties of their devices.
- 聚合物能带隙工程(BGE)作为半导体聚合物研究的新兴领域,对于半导体聚合物材料的应用以及半导体聚合物器件的各项性能的提高起着非常重要的作用。
- The incorporation of carbon into Si-Ge system provides an additional degree of freedom for band gap and strain engineering.
- 碳的加入为Si-Ge系统在能带和应变工程上提供了更大的灵活性。
- Recently, localized electromagnetic band gap structure ( EBG ) is a hot subject of research in the field of microwave engineering because of its remarkable slow wave effect and resonant bandgap characteristics.
- 近年来局域电磁带隙结构因显著的慢波效应和谐振带隙特性成为研究热点之一。
- So, electromagnetic band gap received more and more attentions, but it has more difficulty than common microwave devices in engineering design.
- 然而电磁带隙的设计较普通微波器件的设计难度大,设计成本高,这就给实际工程设计带来了现实问题:如何在保证精度的前提下缩短设计周期,降低研制成本。
- Periodic composite structure has a band gap characteristics of vibration in specific frequency range, making vibration cannot propagate in the structure. Thus there is a new way of thinking to isolate, damp and control vibrations in engineering structures.
- 周期复合结构具有带隙特性,即特定频率范围内的振动在结构中不能传播,这为工程结构的隔震、减振和振动控制提供了一种新的思路。
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