旋光法
微波成像
微波食品加热
计算机科学
光学
雷达成像
极化(电化学)
带宽(计算)
标量(数学)
物理
遥感
雷达
散射
电信
地质学
数学
几何学
物理化学
化学
作者
Thomas Fromentèze,Okan Yurduseven,Michael Boyarsky,Jonah N. Gollub,Daniel L. Marks,David R. Smith
出处
期刊:Optics Express
[Optica Publishing Group]
日期:2017-10-24
卷期号:25 (22): 27488-27488
被引量:37
摘要
We propose a polarimetric microwave imaging technique that exploits recent advances in computational imaging. We utilize a frequency-diverse cavity-backed metasurface, allowing us to demonstrate high-resolution polarimetric imaging using a single transceiver and frequency sweep over the operational microwave bandwidth. The frequency-diverse metasurface imager greatly simplifies the system architecture compared with active arrays and other conventional microwave imaging approaches. We further develop the theoretical framework for computational polarimetric imaging and validate the approach experimentally using a multi-modal leaky cavity. The scalar approximation for the interaction between the radiated waves and the target---often applied in microwave computational imaging schemes---is thus extended to retrieve the susceptibility tensors, and hence providing additional information about the targets. Computational polarimetry has relevance for existing systems in the field that extract polarimetric imagery, and particular for ground observation. A growing number of short-range microwave imaging applications can also notably benefit from computational polarimetry, particularly for imaging objects that are difficult to reconstruct when assuming scalar estimations.
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