太赫兹
- 网络Terahertz
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p型量子阱太赫兹振荡器研究
Study of p - type Quantum Well Terahertz Oscillators
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掺钼ZnO透明导电薄膜的太赫兹电磁波传输性质
Terahertz transmission properties of transparent conducting molybdenum-doped ZnO films
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太赫兹波传输特性的FDTD方法研究
Study on FDTD Method for the Propagation Characteristic of Terahertz Wave
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本论文通过考虑太赫兹波在凹槽中的二次散射,发展出了一种扩展的波导模式法(extendedwaveguidemode:EWGM)。
By considering the additional scattering between grooves , an extended waveguide mode ( EWGM ) method is developed .
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(Pb,La)TiO3铁电薄膜的太赫兹时域光谱实验研究
Time Domain Terahertz Spectroscopy of ( Pb , La ) TiO_3 Ferroelectric Thin Films
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太赫兹场作用下GaAs量子阱的光吸收研究
Optical Absorption in Terahertz-Driven GaAs Quantum Well
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半绝缘GaAs光电导开关产生太赫兹波电场屏蔽效应的二维MonteCarlo模拟
Two-dimensional Monte Carlo simulation of screening of the bias field in terahertz generation from semi-insulated GaAs photoconductors
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超低温高电场下GaAs的电子太赫兹功耗谱的研究
Terahertz power dissipation spectra of electrons in bulk GaAs under high electric fields at low temperature
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太赫兹辐射(THz)是电磁波谱上最后开发的一个波段。
Terahertz radiation is the last region of electromagnetic wave spectrum .
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基于不同半导体的太赫兹(THz)发射光谱
Terahertz ( THz ) emission spectra based on different semiconductors
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太赫兹(THz)探测器是THz技术应用的关键器件之一。
Terahertz ( THz ) detectors are essential for the application of THz technology .
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爆炸性物质的太赫兹(THz)光谱分析爆炸性胸部创伤伤情特点分析
Analysis of Time-Resolved Terahertz Spectroscopy of Explosives Study of wound characteristics of explosive thoracic trauma
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太赫兹时域光谱技术将小波变换引入THz波时域光谱技术。
The application of the wavelet-transform to terahertz time-domain spectroscopy ( THz-TDS ) is described .
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最后对LD端面泵浦的全固态激光器作为太赫兹波泵浦源的研究进行了总结与展望。
At last , we summarize and make an outlook to the LD end-pumped solid-state lasers as terahertz pumping source .
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太赫兹波(THz)是指频率在0.1-10THz之间的电磁波。
The terahertz wave ( THz ) refers to the frequency range between 0.1 to 10 THz .
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利用透射式太赫兹时域光谱技术获取人体正常皮肤组织和癌变组织的THz时域光谱,并对得到THz谱线进行分析。
The THz-TDS spectrums of normal human skin tissue and cancerous tissue are obtained by THz-TDS transmission way .
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近年来,太赫兹(THz)通信系统的研究备受关注。
In recent years , the research of terahertz ( THz ) communication system is under the spotlight .
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现阶段对太赫兹的研究主要集中在THz波的产生、传输和探测上。
Recently research on THz field is focused on the generation , propagation , and detection of THz wave .
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利用太赫兹时域光谱(THzTDS)测试技术及透射式太赫兹逐点扫描成像技术分别对几种玉米种子DNA和胚的样品进行了光谱和成像测量;
The several maize seeds were measured by using THz time-domain spectroscopy ( THz-TDS ) and THz transmitted scanning imaging technology , respectively .
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太赫兹连续波DCN激光器的实验研究
Experimental study of THz CW high-power DCN laser
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太赫兹波(THz波)的产生是THz研究领域的关键技术之一。
The generation of terahertz ( THz ) waves is one of the key technologies in the THz study field .
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太赫兹(THz)辐射由于所处的频谱位置的特殊性,在许多方面有广阔的应用前景。
THz radiation has broad application prospects in lots of fields owing to its special position in the frequency spectrum .
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共面波导(CPW)在太赫兹频段的特性分析与基板材料选择
Transmission Characteristics of Coplanar Waveguides and Choice of Substrate Materials at Terahertz Frequency
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太赫兹(THz)辐射是指频率位于微波和红外光之间的电磁辐射,属于远红外波段。
Terahertz ( THz ) wave , which lies between infrared and microwave in electromagnetic spectrum , belongs to far-infrared band .
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对太赫兹波(THz波)科学与技术的研究是目前全世界最为活跃的研究领域之一。
Nowadays study on science and technology of terahertz wave is one of the most active research fields all over the world .
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本文介绍了利用自由空间电光取样方法对爆炸性物质进行太赫兹(THz)频段的时间分辨光谱测量。
We present a time-resolved measurement in terahertz ( THz ) frequency region by means of the free-space electro-optic sampling ( FSEOS ) .
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太赫兹波(THz)的特殊位置和其本身的优越特性,使它具有非常重要的学术和应用价值。
There are very important scientific and application values for the terahertz ( THz ) waves which have unusual regions and superior characteristics .
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并利用该模型计算了放大自发辐射(ASE)噪声对太赫兹光非对称解复用器(TOAD)开关性能的影响。
The influence of ASE on the performance of terahertz optical asymmetric demultiplexers ( TOAD ) is also discussed .
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本文利用太赫兹时域光谱技术首次测量了乙酸酐在0.2-2.4THz频谱范围内的透射光谱,得到了此物质在THz波段的吸收光谱。
This paper firstly presents the absorption spectra of acetic anhydride by terahertz time-domain spectroscopy in the frequency range between 0.2 and 2.4 THz .
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利用有效介质模型,理论上计算了单壁纳米管薄膜的太赫兹(THz)波段的光导。
The optical properties of single walled nanotube films in terahertz ( THz ) region were calculated with the effective medium approach ( EMA ) .