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一种多层小型化5G毫米波功率分配器设计 被引量:1
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作者 姬晓春 姬五胜 +3 位作者 王林年 张志悦 童荥贇 涅佛达夫.E.I 《天津职业技术师范大学学报》 2018年第3期6-10,共5页
设计一款能够工作在5G毫米波频段的功率分配器,应用频段在24.5~25.8GHz。该功率分配器采用多层电路结构,输入端为中间层带状线,通过弯曲T型过渡结构与上下两层微带线在介质层间沿垂直方向相互耦合实现功率分配。不同于传统威尔金森功... 设计一款能够工作在5G毫米波频段的功率分配器,应用频段在24.5~25.8GHz。该功率分配器采用多层电路结构,输入端为中间层带状线,通过弯曲T型过渡结构与上下两层微带线在介质层间沿垂直方向相互耦合实现功率分配。不同于传统威尔金森功率分配器的微带平面设计方式,该功率分配器体积小,突破电路尺寸过大的技术局限,且仿真结果表明其电路性能优良。给出了功率分配器的等效电路模型,并通过分析和仿真,验证了层间耦合结构功率分配器具有设计毫米波不等功分比特性的功率分配器潜力。 展开更多
关键词 层间耦合结构 功率分配器 弯曲T型过渡结构 5G
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Rayleigh scattering studies on inter-layer interactions in structure-defined individual double-wall carbon nanotubes 被引量:1
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作者 Sihan Zhao Tomoya Kitagawa +3 位作者 Yuhei Miyauchi Kazunari Matsuda Hisanori Shinohara Ryo Kitaura 《Nano Research》 SCIE EI CAS CSCD 2014年第10期1548-1555,共8页
Although the inter-layer coupling in layered materials has attracted considerable interest due to its importance in determining physical properties of two- dimensional systems, studies on the inter-layer coupling in o... Although the inter-layer coupling in layered materials has attracted considerable interest due to its importance in determining physical properties of two- dimensional systems, studies on the inter-layer coupling in one-dimensional systems have so far been limited. Double-wall carbon nanotubes (DWCNTs) are one of the most fundamental and ideal model systems to study the interqayer coupling in one-dimensional systems. In this work, Rayleigh scattering spectroscopy and transmission electron microscopy are used to characterize the electronic transition between inner-and outer-nanotubes of the exactly same individual DWCNT. We find that the interqayer coupling is strong, leading to downshifts in most of the optical transition energies (up to -0.2 eV) compared to isolated CNTs. We also find that the presence of metallic tubes lead to stronger shifts. The inter-layer screening of Coulomb interactions is one of the key factors in explaining the observed results. 展开更多
关键词 inter-layer coupling one-dimensional system electronic properties double-wall carbonnanotubes (DWCNTs) dielectric screening
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