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首页> 外文期刊>Journal of Modern Optics >Spiral hyperlens with enhancements of image resolution and magnification
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Spiral hyperlens with enhancements of image resolution and magnification

机译:螺旋超透镜具有增强的图像分辨率和放大倍率

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A subwavelength spiral hyperlens that is able to image beyond the diffraction limit is studied. The spiral hyperlens is made from an anisotropic metamaterial with a hyperbolic dispersion relation in which the evanescent wave is converted into a propagating wave. Therefore, the propagating wave can be processed by conventional optical systems outside of the spiral hyperlens. The possibility of using a cylindrical hyperlens for overcoming the diffraction limit has been proven analytically and experimentally. In this study, we designed two types of spiral hyperlenses composed of a spiral periodic stack of silver and alumina multilayers. A spiral hyperlens utilizes the spiral geometry to magnify the objects. In comparison with a cylindrical hyperlens, a spiral hyperlens has improved performance in terms of higher image resolution and better image magnifications. Numerical simulations illustrate that the far-field imaging resolution of cylindrical spiral hyperlens is no greater than 110 nm at 365 nm working wavelength.
机译:研究了能够成像超过衍射极限的亚波长螺旋超透镜。螺旋超透镜是由具有双曲离散关系的各向异性超材料制成的,其中which逝波被转换为传播波。因此,可以通过螺旋超透镜之外的常规光学系统来处理传播波。通过分析和实验证明了使用柱面超透镜克服衍射极限的可能性。在这项研究中,我们设计了两种类型的螺旋超透镜,它们由银和氧化铝多层的螺旋周期性叠层组成。螺旋形超透镜利用螺旋形几何图形放大对象。与圆柱型超透镜相比,螺旋型超透镜在更高的图像分辨率和更好的图像放大率方面具有更高的性能。数值模拟表明,在365 nm的工作波长下,圆柱螺旋形超透镜的远场成像分辨率不大于110 nm。

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