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Review

Focused Ion Beam Processing for 3D Chiral Photonics Nanostructures

by
Mariachiara Manoccio
1,2,*,
Marco Esposito
2,*,
Adriana Passaseo
2,
Massimo Cuscunà
2 and
Vittorianna Tasco
2
1
Department of Mathematics and Physics Ennio De Giorgi, University of Salento, Via Arnesano, 73100 Lecce, Italy
2
CNR NANOTEC Institute of Nanotechnology, Via Monteroni, 73100 Lecce, Italy
*
Authors to whom correspondence should be addressed.
Micromachines 2021, 12(1), 6; https://doi.org/10.3390/mi12010006
Submission received: 29 November 2020 / Revised: 8 December 2020 / Accepted: 8 December 2020 / Published: 23 December 2020
(This article belongs to the Special Issue Nanofabrication with Focused Electron/Ion Beam Induced Processing)

Abstract

The focused ion beam (FIB) is a powerful piece of technology which has enabled scientific and technological advances in the realization and study of micro- and nano-systems in many research areas, such as nanotechnology, material science, and the microelectronic industry. Recently, its applications have been extended to the photonics field, owing to the possibility of developing systems with complex shapes, including 3D chiral shapes. Indeed, micro-/nano-structured elements with precise geometrical features at the nanoscale can be realized by FIB processing, with sizes that can be tailored in order to tune optical responses over a broad spectral region. In this review, we give an overview of recent efforts in this field which have involved FIB processing as a nanofabrication tool for photonics applications. In particular, we focus on FIB-induced deposition and FIB milling, employed to build 3D nanostructures and metasurfaces exhibiting intrinsic chirality. We describe the fabrication strategies present in the literature and the chiro-optical behavior of the developed structures. The achieved results pave the way for the creation of novel and advanced nanophotonic devices for many fields of application, ranging from polarization control to integration in photonic circuits to subwavelength imaging.
Keywords: focused ion beam milling; focused ion beam induced deposition; 3D nanostructuring; chirality; chiral photonics; circular polarization; chiroptical effects focused ion beam milling; focused ion beam induced deposition; 3D nanostructuring; chirality; chiral photonics; circular polarization; chiroptical effects
Graphical Abstract

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MDPI and ACS Style

Manoccio, M.; Esposito, M.; Passaseo, A.; Cuscunà, M.; Tasco, V. Focused Ion Beam Processing for 3D Chiral Photonics Nanostructures. Micromachines 2021, 12, 6. https://doi.org/10.3390/mi12010006

AMA Style

Manoccio M, Esposito M, Passaseo A, Cuscunà M, Tasco V. Focused Ion Beam Processing for 3D Chiral Photonics Nanostructures. Micromachines. 2021; 12(1):6. https://doi.org/10.3390/mi12010006

Chicago/Turabian Style

Manoccio, Mariachiara, Marco Esposito, Adriana Passaseo, Massimo Cuscunà, and Vittorianna Tasco. 2021. "Focused Ion Beam Processing for 3D Chiral Photonics Nanostructures" Micromachines 12, no. 1: 6. https://doi.org/10.3390/mi12010006

APA Style

Manoccio, M., Esposito, M., Passaseo, A., Cuscunà, M., & Tasco, V. (2021). Focused Ion Beam Processing for 3D Chiral Photonics Nanostructures. Micromachines, 12(1), 6. https://doi.org/10.3390/mi12010006

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