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heterostructure

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heterostructure是什么意思
英式音标:[hetərəʊ'strʌktʃə(r)]英式读音
美式音标:[ˌhetəroʊ'strʌktʃə]美式读音
词汇分类:没有词汇量怎么搞科研
词义:

n.

异质结构;

用法:

双语例句

用作名词(n.)

Development of such distributed feedback heterostructure lasers requires crystal growth on corrugated layers.
研制这种分布反馈双异质结构激光器要求在皱折层上生长出单晶层。

Improvement of heterostructure processing methods,interface studies and development of all-perovskite heterostructure are introduced.
简单叙述了全钙钛矿异质结构的发展情况。

权威例句

InGaN/AlGaN Double-Heterostructure Blue Leds

Terahertz semiconductor-heterostructure laser.

Ultra-high-Q photonic double-heterostructure nanocavity

P-GaN/N-InGaN/N-GaN Double-Heterostructure Blue-Light-Emitting Diodes

High-power InGaN/AlGaN double-heterostructure blue-light-emitting diodes

Very-high-efficiency double-heterostructure copper phthalocyanine/C60 photovoltaic cells

Physical origin of the small modal volume of ultra-high-Q photonic double-heterostructure nanocavities

Candela‐class high‐brightness InGaN/AlGaN double‐heterostructure blue‐light‐emitting diodes

Efficient photon harvesting at high optical intensities in ultrathin organic double-heterostructure photovoltaic diodes

Gate Control of Spin-Orbit Interaction in an Inverted I n 0.53 G a 0.47 As/I n 0.52 A l 0.48 As Heterostructure
造句:

1. The polaron ground state in asymmetric double heterostructure (ADHS) is studied.

研究了半导体非对称双异质结(ADHS)中,极化子的基态性质。

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2. Heterostructure is the most essential and important structure of semiconductor lasers.

异质结构是半导体激光器最基本也是最重要的结构。

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3. Laser Diodes (contd.) : In-plane lasers: double heterostructure, quantum well, multi-contact, surface emitting.

平面雷射:双异质结构,量子井,多重电极,面发射。

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4. The form of the refractive index variation in waveguide in separate confinement heterostructure (SCH) affects directly the…

分别限制异质结构,波导层折射率的变化形式不同,直接影响输出光的远场分布。

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5. The multi valley mixing in band mixing quantum well and the heterostructure intervalley transferred electron effect are described in this paper.

介绍了能带混合量子阱中的多能谷混合和异质谷间转移电子效应。

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6. The resonant tunneling diode (RTD) is one of the most promising bandgap engineered heterostructure devices due to its negative differential resistance.

共振隧穿二极管因其特有的负微分电阻特性,成为一种很有前途的基于能带工程的异质结构量子器件。

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7. The resonant tunneling diode (RTD) is one of the most promising band-gap engineered heterostructure devices due to its negative differential resistance.

共振隧穿二极管因其特有的负微分电阻特性,成为一种很有前途的基于能带工程的异质结构量子器件。

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8. The quantum characteristics of electrons in the semiconductor heterostructure, for example, quantum wave transport, Coulomb blockade effect are described.

本文阐述了半导体异质结构电子的量子特性,如电子波输运、仑阻塞效应等。

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9. The main factors affecting the quality of semiconductor heterostructure epitaxy chips, inspection methods and some typical test results have beeen introduced in this pater.

本文介绍了影响半导体异质外延晶片质量的主要因素,检测方法,几个典型测试结果。

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10. HHTM, including both heterostructure effect and nonstationary transport effect such as velocity overshoot effect, expends much shorter calculating time than Monte-Carlo method.

HHTM既包含了异质结效应,又包含了高场输运中的速度过冲等非稳态输运效应。

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11. High electron mobility transistors (HEMT) is one of field effect transistors, which is made by modulation doped heterostructure technology and possess super high electron mobility.

高电子迁移率晶体管(HEMT)是利用异质结和调制掺杂技术制成的具有超高迁移率的场效应晶体管。

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12. The energy band tailoring in AlGaN/GaN heterostructure by using polarization charge is investigated according to the self consistent solution of Schr dinger equation and Poisson equation.

从自洽求解薛定谔方程和泊松方程出发研究了利用异质界面上的极化电荷来剪裁异质结能带。

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13. The electron states and tunneling transmission probability for a double barrier heterostructure system containing scattering centers are solved by using the single-band double-valley theory.

本文从单带双谷模型出发研究了电子在量子阱内遭到散射时电子状态及隧穿几率的变化。

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14. In order to design the quantum point contact (QPC) devices based on the semiconductor heterostructure, electrostatic potential distribution and control methods of the QPC are needed to be considered.

为了设计以半导体异质结构量子点接触(QPC)为基础的器件,需要掌握QPC结构中静电势的分布及其控制方法。

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15. In order to design the quantum point contact (QPC) devices based on the semiconductor heterostructure, electrostatic potential distribution and control methods of the QPC are needed to be considered.

为了设计以半导体异质结构量子点接触(QPC)为基础的器件,需要掌握QPC结构中静电势的分布及其控制方法。

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heterostructure

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