In the terahertz(THz) regime,the active region for a solid-state detector usually needs to be implemented accurately in the near-field region of an on-chip antenna.Mapping of the near-field strength could allow for ...In the terahertz(THz) regime,the active region for a solid-state detector usually needs to be implemented accurately in the near-field region of an on-chip antenna.Mapping of the near-field strength could allow for rapid verification and optimization of new antenna/detector designs.Here,we report a proof-of-concept experiment in which the field mapping is realized by a scanning metallic probe and a fixed AlGaN/GaN field-effect transistor.Experiment results agree well with the electromagnetic-wave simulations.The results also suggest a field-effect THz detector combined with a probe tip could serve as a high sensitivity THz near-field sensor.展开更多
We have studied the influence of probe-sample interaction in a scanning near-field optical microscopy (SNOM) in the far field by using samples with a step structure. For a sample with a step height of - λ/4, the SN...We have studied the influence of probe-sample interaction in a scanning near-field optical microscopy (SNOM) in the far field by using samples with a step structure. For a sample with a step height of - λ/4, the SNOM image contrast between the two sides of the step changes periodically at different scan heights. For a step height of-λ/2, the image contrast remains approximately the same. The probe-sample interaction determines the SNOM image contrast here. The influence of different refractive indices of the sample has been also analysed by using a simple theoretical model.展开更多
The Particle Velocity Sensor (PVS) is a kind of acoustic transducer which measures the particle velocity directly with figure-of-eight directivity. This paper proposes a near-field noise scanning technology based on t...The Particle Velocity Sensor (PVS) is a kind of acoustic transducer which measures the particle velocity directly with figure-of-eight directivity. This paper proposes a near-field noise scanning technology based on the research of PVS, pressure-particle velocity (P-U) probe, and its application in noise source identification. Firstly, the principle and characteristics of PVS are presented. Secondly, a P-U probe is designed on the basis of PVS development. Finally, the noise measurement experiment for a single source is arranged and conducted. The result shows that the proposed P-U probe performs well in near-field noise source identification and localization.展开更多
为了解决低压高速电力线通信(power line communication,PLC)网络电磁辐射准确测量的问题,研制一套基于球形探头的近场电场测量系统。从理论上分析球形探头的场强变换原理,设计测量系统,并获得了变换因子的表达式。研究进一步提高测量...为了解决低压高速电力线通信(power line communication,PLC)网络电磁辐射准确测量的问题,研制一套基于球形探头的近场电场测量系统。从理论上分析球形探头的场强变换原理,设计测量系统,并获得了变换因子的表达式。研究进一步提高测量系统灵敏度的方法,设计高输入阻抗的电压跟随电路。通过大量的试验进行验证,得到了测量系统在1~30MHz频率范围内所能测量PLC网络电磁辐射场强的范围,研究表明,在现有PLC网络电磁辐射限值下,该近场电场测量系统能够满足测量要求。展开更多
基金partially supported by the Knowledge Innovation Program of the Chinese Academy of Sciences(Grant No.KJCX2-EW-705)China Postdoctoral Science Foundation(Grant No.2014M551678)+4 种基金Jiangsu Planned Projects for Postdoctoral Research Funds(Grant No.1301054B)Instrument Developing Project of the Chinese Academy of Sciences(Grant No.YZ201152)the National Natural Science Foundation of China(Grant No.61271157)Suzhou Science and Technology Project(Grant No.ZXG2012024)the Chinese Academy of Sciences Visiting Professorship for Senior International Scientists(Grant No.2010T2J07)
文摘In the terahertz(THz) regime,the active region for a solid-state detector usually needs to be implemented accurately in the near-field region of an on-chip antenna.Mapping of the near-field strength could allow for rapid verification and optimization of new antenna/detector designs.Here,we report a proof-of-concept experiment in which the field mapping is realized by a scanning metallic probe and a fixed AlGaN/GaN field-effect transistor.Experiment results agree well with the electromagnetic-wave simulations.The results also suggest a field-effect THz detector combined with a probe tip could serve as a high sensitivity THz near-field sensor.
基金Project supported by the National Natural Science Foundation of China (Grant Nos 90206003, 10374005, 10434020, 10521002, 10328407 and 90101027) and the Research Fund for the Doctoral Program of Higher Education of China (Grant No 20040001012).
文摘We have studied the influence of probe-sample interaction in a scanning near-field optical microscopy (SNOM) in the far field by using samples with a step structure. For a sample with a step height of - λ/4, the SNOM image contrast between the two sides of the step changes periodically at different scan heights. For a step height of-λ/2, the image contrast remains approximately the same. The probe-sample interaction determines the SNOM image contrast here. The influence of different refractive indices of the sample has been also analysed by using a simple theoretical model.
文摘The Particle Velocity Sensor (PVS) is a kind of acoustic transducer which measures the particle velocity directly with figure-of-eight directivity. This paper proposes a near-field noise scanning technology based on the research of PVS, pressure-particle velocity (P-U) probe, and its application in noise source identification. Firstly, the principle and characteristics of PVS are presented. Secondly, a P-U probe is designed on the basis of PVS development. Finally, the noise measurement experiment for a single source is arranged and conducted. The result shows that the proposed P-U probe performs well in near-field noise source identification and localization.
文摘为了解决低压高速电力线通信(power line communication,PLC)网络电磁辐射准确测量的问题,研制一套基于球形探头的近场电场测量系统。从理论上分析球形探头的场强变换原理,设计测量系统,并获得了变换因子的表达式。研究进一步提高测量系统灵敏度的方法,设计高输入阻抗的电压跟随电路。通过大量的试验进行验证,得到了测量系统在1~30MHz频率范围内所能测量PLC网络电磁辐射场强的范围,研究表明,在现有PLC网络电磁辐射限值下,该近场电场测量系统能够满足测量要求。