Design and rigorous analysis of transformation-optics scaling devices.

Design and rigorous analysis of transformation-optics scaling devices.
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DOI:
10.1364/josaa.30.001698
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发表时间:
2013-08
期刊:
Journal of the Optical Society of America. A, Optics, image science, and vision
影响因子:
--
通讯作者:
W. Jiang;B. Xu;Q. Cheng;T. Cui;Guanxia Yu
W. Jiang;B. Xu;Q. Cheng;T. Cui;Guanxia Yu
中科院分区:
其他
文献类型:
--
作者:
W. Jiang;B. Xu;Q. Cheng;T. Cui;Guanxia Yu

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可以缩小或放大物体的缩放设备是使用变换光学设计的。利用本征模展开法,对具有各向异性参数的尺度器件的电磁散射特性进行了严格的分析。如果虚拟物体的半径小于真实的物体的半径,则它是具有正材料参数的缩小装置;如果虚拟物体的半径大于真实的物体的半径,则它是具有正或负材料参数的放大装置。因此,缩放设备可以使电介质或金属物体看起来更小或更大。严格的分析表明,缩放装置的散射系数与等效虚拟物体的散射系数相同。当虚拟物体的半径接近零时,缩放装置将成为隐形斗篷。在这种情况下,缩放设备的散射效应将对设备的材料参数敏感。
Scaling devices that can shrink or enlarge an object are designed using transformation optics. The electromagnetic scattering properties of such scaling devices with anisotropic parameters are rigorously analyzed using the eigenmode expansion method. If the radius of the virtual object is smaller than that of the real object, it is a shrinking device with positive material parameters; if the radius of the virtual object is larger than the real one, it is an enlarging device with positive or negative material parameters. Hence, a scaling device can make a dielectric or metallic object look smaller or larger. The rigorous analysis shows that the scattering coefficients of the scaling devices are the same as those of the equivalent virtual objects. When the radius of the virtual object approaches zero, the scaling device will be an invisibility cloak. In such a case, the scattering effect of the scaling device will be sensitive to material parameters of the device.