Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/138673
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Type: Journal article
Title: Integrated photonics on the dielectrically loaded lithium niobate on insulator platform
Author: Han, X.
Yuan, M.
Xiao, H.
Ren, G.
Nguyen, T.G.
Boes, A.
Su, Y.
Mitchell, A.
Tian, Y.
Citation: Journal of the Optical Society of America B: Optical Physics, 2023; 40(5):D26-D26
Publisher: Optica Publishing Group
Issue Date: 2023
ISSN: 0740-3224
1520-8540
Statement of
Responsibility: 
Xu Han, Mingrui Yuan, Huifu Xiao, Guanghui Ren, Thach Giang Nguyen, Andreas Boes, Yikai Su, Arnan Mitchell, and Yonghui Tian
Abstract: Thin-film lithium niobate on insulator (LNOI) is emerging as one of the promising platforms for integrated photonics due to the excellent material properties of lithium niobate, which includes a strong electro-optic effect, high second-order optical nonlinearity, a large optical transparency window, and low material loss. Although direct etching of lithium niobate has been adopted more widely in recent years, it remains to be seen if it will be adopted in foundry processes due to the incompatibility with standard CMOS fabrication processes. Thus, the scalability of the LNOI platform is currently still limited when compared with other platforms such as silicon photonics. Dielectrically loaded LNOI waveguides may present an alternative. These waveguides have been used to demonstrate a range of optical components with a simplified fabrication process while demonstrating competitive performance. In this contribution, we review the recent progress in dielectrically loaded LNOI waveguides, summarize the advantages and disadvantages of different loading materials, compare the performance of different platforms, and discuss the future of these platforms for photonic integrated circuits.
Rights: ©2023 Optica Publishing Group
DOI: 10.1364/josab.482507
Grant ID: http://purl.org/au-research/grants/arc/DP190102773
Published version: http://dx.doi.org/10.1364/josab.482507
Appears in Collections:Electrical and Electronic Engineering publications

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