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数字超材料。

Digital metamaterials.

机构信息

University of Pennsylvania, Department of Electrical and Systems Engineering, Philadelphia, Pennsylvania 19104, USA.

出版信息

Nat Mater. 2014 Dec;13(12):1115-21. doi: 10.1038/nmat4082. Epub 2014 Sep 14.

Abstract

Balancing complexity and simplicity has played an important role in the development of many fields in science and engineering. One of the well-known and powerful examples of such balance can be found in Boolean algebra and its impact on the birth of digital electronics and the digital information age. The simplicity of using only two numbers, '0' and '1', in a binary system for describing an arbitrary quantity made the fields of digital electronics and digital signal processing powerful and ubiquitous. Here, inspired by the binary concept, we propose to develop the notion of digital metamaterials. Specifically, we investigate how one can synthesize an electromagnetic metamaterial with a desired permittivity, using as building blocks only two elemental materials, which we call 'metamaterial bits', with two distinct permittivity functions. We demonstrate, analytically and numerically, how proper spatial mixtures of such metamaterial bits lead to elemental 'metamaterial bytes' with effective material parameters that are different from the parameters of the metamaterial bits. We then apply this methodology to several design examples of optical elements, such as digital convex lenses, flat graded-index digital lenses, digital constructs for epsilon-near-zero (ENZ) supercoupling and digital hyperlenses, thus highlighting the power and simplicity of the methodology.

摘要

平衡复杂性和简洁性在科学和工程的许多领域的发展中都发挥了重要作用。其中一个众所周知且强大的例子是布尔代数,它对数字电子学和数字信息时代的诞生产生了影响。在二进制系统中仅使用两个数字“0”和“1”来描述任意数量的简洁性使得数字电子学和数字信号处理领域变得强大且无处不在。在这里,受二进制概念的启发,我们提出了开发数字超材料的概念。具体来说,我们研究了如何仅使用两种基本材料(我们称之为“超材料位”),通过使用具有两种不同介电函数的构建块来合成具有所需介电常数的电磁超材料。我们通过分析和数值方法证明了,这种超材料位的适当空间混合会导致具有与超材料位不同的有效材料参数的基本“超材料字节”。然后,我们将该方法应用于几个光学元件的设计示例,例如数字凸透镜、平面梯度折射率数字透镜、用于近零(ENZ)超耦合的数字结构和数字超透镜,从而突出了该方法的强大功能和简洁性。

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