By Mikhail A. Noginov, Viktor A. Podolskiy

From technological know-how fiction to technological know-how laboratories

Discover the cutting-edge in Photonic Metamaterials

Metamaterials—composite media with strange optical properties—have revolutionized the panorama of optical technology and engineering during the last many years. Metamaterials have reworked science-fiction-like suggestions of superresolution imaging and optical cloaking to the area of technology laboratories, and extra promise to rework those into the area of our daily life. This new period of optical metamaterials demands the advance of experimental and theoretical equipment able to studying optical habit at the multitude of scales—from the nanometer scale of person inhomogeneity, to the micrometer point and the bigger scale of metamaterials-based units.

Tutorials in Metamaterials offers a suite of chapters that have been designed as self-contained tutorials describing photonic metamaterials and the cutting-edge in metamaterials examine.

Chapters cover:

  • Linear and nonlinear houses of photonic metamaterials and their strength applications
  • Fabrication recommendations for optical metamaterials, starting from electron-beam lithography, targeted ion beam milling, and nanoimprint lithography to direct laser writing
  • Recent achievements in metatamerial learn at noticeable, IR, and microwave frequencies
  • Novel functions of metamaterials for gentle guiding, steerage, and refraction
  • Efforts to compensate and do away with optical loss by way of introducing optical achieve into the metamaterial matrix

A finished evaluate of metamaterial photonics, this reference is acceptable for graduate scholars in addition to physicists and engineers drawn to coming into this dynamic new field.

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Extra resources for Tutorials in metamaterials. Noginov, Viktor A. Podolskiy

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This will give rise to additional processing steps and delicate considerations regarding the choice of process parameters and materials. Moreover, moving SRRs from the telecom to the visible range will bring the process to the limit of size scaling in SRRs (Zhou et al. 2005; Klein et al. 2006b). Due to design and material limitations, FIB technique has certain limitation in its use for fabricating optical metamaterials. Nevertheless, it should be mentioned that for some specific designs and proof-of-principle experiments, for example, including nonlinear materials, FIB is the first choice for rapid prototyping.

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52, 2343, 2005. 28. R. Wangberg, J. Elser, E. E. Narimanov, and V. A. Podolskiy, Non-magnetic nanocomposites for optical and infrared negative refraction index media, J. Opt. Soc. Am. B. 23, 498, 2006. Linear and Nonlinear Metamaterials and Transformation Optics 25 29. A. A. Govyadinov and V. A. Podolskiy, Meta-material photonic funnels for subdiffraction light compression and propagation, Phys. Rev. B 73, 155108, 2006. 30. Z. Liu, H. Lee, Y. Xiang, C. Sun, X. Zhang, Far-Field optical Hyperlens Magnifying Sub-Diffraction-Limited objects, Science 315, 1686, 2007.

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