Perspective on integrated photonic devices using transparent conductive oxides: Challenges and opportunities

Author:

Wang Alan X.1ORCID,Hsu Wei-Che12ORCID

Affiliation:

1. Department of Electrical and Computer Engineering, Baylor University 1 , One Bear Place #97356, Waco, Texas 76798, USA

2. School of Electrical Engineering and Computer Science, Oregon State University 2 , Corvallis, Oregon 97331, USA

Abstract

Transparent conductive oxides (TCOs) are gaining increasingly high research interest for integrated photonic devices due to the strong plasma dispersion effect and process compatibility with versatile optoelectronic platforms. In this perspective article, the authors gave a brief review of research efforts both on theoretical modeling and experimental demonstration of integrated photonic devices, especially on high-efficiency electro-optic modulators through the integration with plasmonics and silicon photonics. In addition, the authors discussed the challenge and opportunity associated with TCO photonic devices and the application in photonic integrated circuits (PICs) with emphasis on high mobility materials, high-speed E-O modulators, and large-scale integration. Finally, we conclude that collaboration with existing silicon photonics foundry is a necessary route to incorporate TCOs into existing PIC ecosystems.

Funder

Intel Corporation

National Science Foundation

Air Force Office of Scientific Research

NASA Headquarters

Publisher

AIP Publishing

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5. Business Research Insights, see https://www.businessresearchinsights.com/market-reports/transparent-conducting-oxide-tco-glass-market-103811 for “ Transparent conducting oxide (TCO) glass market size, share, growth, and industry analysis by type (ITO coated glass, FTO coated glass, AZO coated glass) by application (flat panel display, solar battery & others) regional forecast from 2022 to 2028” (2023).

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