Indium-Tin-Oxide for High-performance Electro-optic Modulation

Author:

Ma Zhizhen1,Li Zhuoran1,Liu Ke12,Ye Chenran1,Sorger Volker J.1

Affiliation:

1. 1Department of Electrical and Computer Engineering, School of Engineering and Applied Science, George Washington University, Washington, DC 20052, USA

2. 2The Key Laboratory of Optoelectronics Technology, Ministry of Education, Beijing University of Technology, Beijing 100124, P.R. China

Abstract

Abstract:Advances in opto-electronics are often led by discovery and development of materials featuring unique properties. Recently, the material class of transparent conductive oxides (TCO) has attracted attention for active photonic devices on-chip. In particular, indium tin oxide (ITO) is found to have refractive index changes on the order of unity. This property makes it possible to achieve electrooptic modulation of sub-wavelength device scales, when thin ITO films are interfaced with optical light confinement techniques such as found in plasmonics; optical modes are compressed to nanometer scale to create strong light-matter interactions. Here we review efforts towards utilizing this novel material for high performance and ultra-compact modulation. While high performance metrics are achieved experimentally, there are open questions pertaining to the permittivity modulation mechanism of ITO. Finally, we review a variety of optical and electrical properties of ITO for different processing conditions, and show that ITO-based plasmonic electro-optic modulators have the potential to significantly outperform diffractionlimited devices.

Publisher

Walter de Gruyter GmbH

Subject

Electrical and Electronic Engineering,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials,Biotechnology

Reference62 articles.

1. Nanophotonic Devices : Beyond Classical Limits OSA Incubator Meeting Washington;May;Proc,2014

2. Structural Studies of Tin ped IndiumOxide and In;Nadaud;Solid State Chem,1998

3. Unity - order index change in transparent conducting oxides at visible frequencies;FeigenbaumE;Nano Lett,2010

4. All - optical high - speed signal processing with silicon organic hybrid slot waveguides;Koos;Nat Photonics,2009

5. Effects of microstructure on the optical properties of tin - doped indium oxide thin films studied by electron energy loss spectroscopy;Rauf;Mater Lett,1955

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