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1.
付亚男  张新群  赵国忠  李永花  于佳怡 《物理学报》2017,66(18):180701-180701
提出了一个基于谐振环结构的宽带且高效的太赫兹线偏振转换器.该结构由金属-电介质-金属三层构成,位于顶层的是基于开口谐振环的超表面,中间为介质层,底部为金属板.实验结果表明,该结构可以在0.59-1.24 THz频率范围内将线偏振的太赫兹波偏振方向旋转90°,转换率超过80%.通过计算该结构在所研究的频率范围内反射光的偏振角和椭圆角,证实了该结构可以在较宽的频率范围内实现高效的线偏振转换.对该结构在偏振转换率高的频率下表面电流和电场进行仿真,分析了高偏振转换率和宽带的机理.同时,研究了该结构的偏振转换率对入射角以及偏振角的依赖性,结果表明该结构在0°-30°入射角范围内、-10°-10°偏振角范围内均有很好的偏振转换性能.  相似文献   

2.
A device for holding biomolecule samples on a membrane allows scanning using terahertz frequency waves. Such scanning has previously been difficult due to the strong attenuation of terahertz frequency waves by water. Several types of biomolecules were scanned using terahertz time domain spectroscopy (TDS), and the data showed clear differences in transmittance among the samples. This membrane device is a promising aid for research on biomolecules using terahertz waves.  相似文献   

3.
We present terahertz time-domain spectroscopy characterization of various animal tissues obtained from pork and rats. As the sensitivity of terahertz radiation to polar molecules of water is very high, biological tissues with high level of hydration show strong absorption at terahertz frequencies. The experimental data indicate that skin, fat and lean pork tissues have different frequency-dependent response to terahertz radiation due to the variation in water content. The same type tissue from different animals, however, is observed to show very similar water absorption.  相似文献   

4.
龙洁  李九生 《物理学报》2021,(7):112-119
利用相变材料嵌入超表面组成复合结构实现太赫兹移相器,该器件自上而下依次为二氧化钒嵌入金属层、液晶、二氧化钒嵌入金属层、二氧化硅层.通过二氧化钒的相变特性和液晶的双折率特性同时作用实现对器件相位调控.随着外加温度变化二氧化钒电导率发生改变,器件的相位随之产生移动,同样的对液晶层施加不同的电压导致液晶折射率发生变化,器件相位也会有影响.经过这两种介质共同作用,最终实现对太赫兹波相位有效调控.仿真结果验证了该相移器在频率f=0.736 THz时,太赫兹移相器的最大相移量达到355.37°,在0.731—0.752 THz(带宽为22 GHz)频率范围相移量超过350°.这种基于相变材料与超表面复合结构为灵活调控太赫兹波提供了一种新思路,将在太赫兹成像、通信等领域有着广泛的应用前景.  相似文献   

5.
A compact, high-power emitter of half-cycle terahertz (THz) radiation is demonstrated. The device consists of an epitaxial InAs emitter upon a GaAs prism and produces THz pulses that are 20 times more powerful than those from conventional planar InAs emitters. This improvement is a direct result of reorienting the transient THz dipole such that its axis is not perpendicular to the emitting surface.  相似文献   

6.
用高阻硅制作的光学元件是太赫兹系统里常用的器件, 但是其高达3.42的相对折射率所引起的阻抗失配严重影响了太赫兹系统的功率, 因此研究人员尝试了各种各样的方式在高阻硅表面镀上有效的增透膜. 在太赫兹波段, 缺乏合适的材料是增透研究中亟需解决的一个重要问题. 介绍一种结构新颖的硅材料增透器件----- 三维光子倒置光栅. 与普通高阻硅片相比, 当结构周期为15 μm时, 该器件在0.2---7.3 THz范围内对太赫兹波具有明显的增透作用, 且覆盖了大部分太赫兹波段. 此外, 该器件的使用不受太赫兹偏振方向限制, 适用于大入射角情形, 并具有高达116.3%的相对3 dB带宽.  相似文献   

7.
由于太赫兹波对极性物质有很高的灵敏度,因此可以利用太赫兹时域光谱技术检测沙粒中含有的微量原油。将微量的原油浓度与太赫兹衰减系数之间建立起线性模型。同时引入有效介质理论来证实太赫兹介电常数与原油含量低于200 ppm之间的线性关系。结果表明,太赫兹时域光谱技术可以成为检测沙粒中微量原油泄漏的有效方法。  相似文献   

8.
张戎  郭旭光  曹俊诚 《物理学报》2011,60(5):50705-050705
光栅耦合是量子阱光电探测器探测正入射电磁辐射的常用耦合方法,本文采用模式展开法研究了一维金属光栅太赫兹量子阱光电探测器中的电磁场分布,并给出了器件有源区中的平均光强.研究结果表明,若一维光栅的周期与太赫兹波在器件材料中的波长相当,并且根据器件结构选取合理的光栅占空比,可使器件中的平均光场最强,光栅的光耦合效率最高,从而提高器件的响应率. 关键词: 太赫兹 量子阱光电探测器 光栅  相似文献   

9.
We demonstrate continuous-wave(CW) high power-efficiency terahertz quantum cascade laser based on semiinsulating surface-plasmon waveguide with epitaxial-side down(Epi-down) mounting process.The performance of the device is analyzed in detail.The laser emits at a frequency of ~3.27 THz and has a maximum CW operating temperature of ~ 70 K.The peak output powers are 177 mW in pulsed mode and 149 mW in CW mode at 10 K for 130-μm-wide Epi-down mounted lasers.The record wall-plug efficiencies in direct measurement are 2.26% and 2.05% in pulsed and CW mode,respectively.  相似文献   

10.
Mingxia He  Zhen Tian  Qirong Xing 《Optik》2011,122(18):1676-1679
A three-dimensional chiral metamaterial consisting of arrays of the multi-layered mutually twisted metallic spirals is proposed. We theoretically demonstrate such a chiral spiral structure exhibiting negative refractive index at terahertz frequencies. The chirality with varied refractive index can be obtained by change of configurations of the structure. The presented design offers flexibility for investigation of electromagnetic properties of chiral metamaterials in the terahertz regime and thus leads to a unique route to terahertz device applications.  相似文献   

11.
邓玉强 《应用光学》2020,41(4):651-661
太赫兹作为新的技术手段在物质成分识别、高速通信、生物医学、安检成像和军事国防等领域具有重要的作用。太赫兹技术的各种应用都建立在对太赫兹本身及其与物质相互作用测量的基础上,因此准确的太赫兹参数测量及相关量值溯源是太赫兹应用的技术支撑和保障。介绍中国计量科学研究院在太赫兹辐射参数计量标准研究中形成的测量技术和溯源方法、研制的测量仪器和测量装置、制定的计量校准法规和建立的计量标准装置,对太赫兹辐射时域、频域、空域和强度等参数给出了量值溯源传递图并进行了测量不确定度分析。提出的太赫兹计量方法和标准装置可保障太赫兹技术研究和应用中的量值可靠,也可为其他太赫兹参数的测量提供参考。  相似文献   

12.
The possibility of using plasma wave field effect transistor in a time domain terahertz (THz) spectroscopy setup is presented. We demonstrate that High Electron Mobility Transistors (HEMTs) is an efficient device for detection of pulsed terahertz electric fields generated with a femtosecond laser oscillator. The response was observed in the frequency range of about 1 THz, far above the cutoff frequency of the transistors at room temperature. We show that the physical mechanism of the detection is related to the plasma waves excited in the transistor channel and that significant improvement of the active device can be achieved by increasing the drain current. The two-dimensional terahertz imaging applications clearly demonstrate that plasma wave nanometer HEMT should be employed as efficient future detectors in a matrix configuration.  相似文献   

13.
随着太赫兹技术及其应用的快速发展,各类太赫兹控制器件需求也随之增加,作为太赫兹系统重要器件之一,太赫兹波移相器成为当前研究热点。已有移相器存在着尺寸较大、结构复杂、相移量较小等问题,为克服上述缺陷,提出一种光栅-液晶复合结构太赫兹移相器,该器件结构为石英、石墨烯、液晶盒、光栅结构、石墨烯和石英组成。通过改变石墨烯电极上电压,使液晶折射率发生改变,相移器的相位因折射率改变而发生变化,通过控制外加电压可以实现对太赫兹波相移量有效调控。计算结果表明,该移相器在0.39~0.46 THz频率范围内实现了400°相移量,回波损耗小于-11 dB,在频率0.43 THz处,最大相移量达到422°。太赫兹波入射角在0°~30°范围内变化,移相器的相移量保持不变,而且该器件对入射太赫兹波偏振态不敏感。所设计的太赫兹移相器具有相移量大、结构尺寸小等优点,在未来的太赫兹通信、安检、医疗、传感、成像等领域中具有广阔的应用前景。  相似文献   

14.
郭伟杰  陈再高  蔡利兵  王光强  程国新 《物理学报》2015,64(7):70702-070702
本文研究了一种太赫兹波段双环超材料慢波结构, 并具有同轴引出结构的相对论过模表面波振荡器. 设计了超材料同轴过模慢波结构; 通过色散特性, 进行了模式选择和过模结构电子束电参数和几何参数的设计; 根据超材料同轴慢波结构的特点, 设计了具有同轴引出结构的末端同轴输出段. 粒子模拟结果表明, 在电子束电压为600 kV和电流为1.0 kA, 引导磁场为2.0 T 时, 同轴超材料慢波结构过模表面波振荡器输出稳定单频的0.141 THz电磁波, 峰值功率为316.8 MW.  相似文献   

15.
During the past decade electromagnetic metamaterials have realized many exotic phenomena that are difficult or impossible using naturally occurring materials. It is their resonantly enhanced interaction with electromagnetic waves that underpins their attractive qualities, which are increasingly important in the terahertz frequency range. Passive and active terahertz metamaterials and devices have enabled novel functionality and unprecedented terahertz device performance. These demonstrations prove their potential to address the so‐called terahertz gap, a technology vacuum associated with the deficiency of natural materials with a desirable terahertz response.  相似文献   

16.
许多生物分子自身的转动、振动或分子团的整体振动模式都位于太赫兹波段内,因此可以利用太赫兹光谱技术对生物分子进行检测。同时又由于太赫兹波的光子能量仅为毫电子伏量级,不会对分子的内部结构造成破坏,所以太赫兹时域光谱技术在生物检测方面具有良好的应用前景。众所周知,绝大多数的生物分子只有在液体条件下才能发挥其生物活性,所以研究液体环境下生物分子之间的相互作用就非常必要。然而水分子的转动模式、振动模式以及和氢键有关的能量均处于太赫兹波段,从而对其产生强烈的吸收;另外,水分子为极性分子,而极性分子对太赫兹波有强烈的共振吸收,这就使利用太赫兹技术对生物分子活性进行动态表征产生了困难。因此在研究溶液中的生物分子与太赫兹波的相互作用时,最大限度地减小水分子对太赫兹波的吸收就成为近年来的研究热点。目前,减少水对太赫兹波吸收的主要方法有:在溶液样品中加入抑制氢键缔合的离子来减小水对太赫兹的吸收;通过改变溶液的温度来调节水对太赫兹的吸收;利用微流控芯片技术,通过减小被测样品与太赫兹波的作用距离来减小水对太赫兹波的吸收。另外,激光的激励、电场或磁场的处理,也能改变水对太赫兹波的吸收,将盛有去离子水的微流控芯片放于电场中,研究经电场处理不同时间的去离子水对太赫兹吸收强度的影响。结果发现,太赫兹波的透射强度随着去离子水在电场当中静置时间的增加而增强,当在电场中静置60 min时,太赫兹的频谱强度达到最大,与空气的频谱强度接近。由此可以推断外加电场使水分子的偶极矩发生了变化,从而对整体水分子的振动和转动产生了影响,并且改变了水中的氢键结构,导致了太赫兹透射光谱强度的增强。  相似文献   

17.
Detectors based on intersubband transitions in quantum wells have great potential for use between one and several terahertz. We propose a tunable, antenna-coupled, intersubband terahertz (TACIT) detector that is both sensitive and fast, with a speed limited only by the intersubband relaxation rate (1 ns at at ). The detector is sensitive over a narrow range of frequencies, and the frequency of peak absorption can be tuned by applying a bias voltage to the device.  相似文献   

18.
Grant J  Ma Y  Saha S  Lok LB  Khalid A  Cumming DR 《Optics letters》2011,36(8):1524-1526
We present the simulation, implementation, and measurement of a polarization insensitive resonant metamaterial absorber in the terahertz region. The device consists of a metal/dielectric-spacer/metal structure allowing us to maximize absorption by varying the dielectric material and thickness and, hence, the effective electrical permittivity and magnetic permeability. Experimental absorption of 77% and 65% at 2.12 THz (in the operating frequency range of terahertz quantum cascade lasers) is observed for a spacer of polyimide or silicon dioxide respectively. These metamaterials are promising candidates as absorbing elements for thermally based terahertz imaging.  相似文献   

19.
The authors theoretically demonstrate the terahertz beam shaping with metallic subwavelength holes array surrounded by concentric periodic grooves. High transmission and directional radiation can be obtained simultaneously for the resonant excitation of the surface wave in the combined structure. Finite-difference time-domain simulation results shows that the transmission mainly depends on the lattice constant of hole array and the features of incident surface around it, while the far-field angle distribution is dominated by the details of the output surface. This compact beam shaping structure is hoped to serve as a basic device for future terahertz systems.  相似文献   

20.
太赫兹频率分辨率是影响物质鉴别的重要因素,但是由于太赫兹时域光谱系统中存在器件反射,使得参考信号和测量信号出现多个反射峰,时域信号长度截断导致频率分辨率很低。为了去除反射峰的影响,提出基于经验模态分解去除时域反射峰,从而提高太赫兹频率分辨率的方法。通过与太赫兹主峰的互相关定位时域反射峰,计算反射峰的上下包络和求平均值,获取本征模函数并代替反射峰,增加时域信号有效长度,提高太赫兹频域分辨率。空气中水蒸汽的太赫兹透射谱实验结果表明,该方法具有自适应去除多个反射峰的能力,对太赫兹时域信号修复效果良好,频率分辨率提高了12倍,而且未丢失有用的吸收谱信息,吸收峰的位置和个数与真实谱一致,很好地保留了太赫兹谱的鉴别能力。  相似文献   

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