Pushing the Envelope for Heterogeneity: Multilayer and 3-D Heterogeneous Integrations for Next Generation Millimeter- and Submillimeter-Wave Circuits and Systems

Pushing the Envelope for Heterogeneity: Multilayer and 3-D Heterogeneous Integrations for Next Generation Millimeter- and Submillimeter-Wave Circuits and Systems
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突破异构性的极限:下一代毫米波和亚毫米波电路和系统的多层和 3D 异构集成

DOI:
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发表时间:
2017
影响因子:
3.6
通讯作者:
K. Samanta
K. Samanta
中科院分区:
计算机科学3区
文献类型:
--
作者:
K. Samanta

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毫米波(mmW)和亚毫米波(sub-mmW)或太赫兹(THz; >300 GHz)频率由于其独特的优势而受到越来越多的关注,例如更宽的带宽,更高的空间(尺寸)和时间(时间)分辨率,更紧凑的天线和其他组件,以及频率的可重用性[1],[2]。因此,高速无线通信领域的军事和商业应用[包括第五代(5G),即,38 GHz和68 GHz、81-86 GHz和92?95 GHz],国防、安全和空间科学迅速发展[3],[4]。近年来,毫米波和太赫兹在光谱学和成像、天文学以及环境/大气研究和监测方面的应用作为先进技术呈指数级增长[5]。与此同时,mmW/THz成像被视为生物,安全和健康科学应用传统技术的安全,低成本替代品[6],[7]。
Millimeter-wave (mmW) and submillimeter-wave (sub-mmW) or terahertz (THz; >300 GHz) frequencies are receiving increasing interest due to their distinct advantages, such as wider bandwidth, higher spatial (size) and temporal (time) resolution, the more compact antennas and other components they allow, and the reusability of frequencies [1], [2]. As a result, both military and commercial applications in areas of high-speed wireless communication [including fifth-generation (5G), i.e., 38 GHz and 68 GHz, 81-86 GHz, and 92?95 GHz], defense, security, and space science have been increasing rapidly [3], [4]. In recent years, mmW and THz applicaitons for spectroscopy and imaging, astronomy, and environmental/atmospheric study and monitoring have grown exponentially as advanced techniques [5]. At the same time, mmW/THz imaging is being viewed as a safe, low-cost alternative to conventional techniques for biological, security, and health-sciences applications [6], [7].