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Microstructure and domain engineering of lithium niobate crystal films for integrated photonic applications.
Sun, Dehui; Zhang, Yunwu; Wang, Dongzhou; Song, Wei; Liu, Xiaoyan; Pang, Jinbo; Geng, Deqiang; Sang, Yuanhua; Liu, Hong.
Afiliação
  • Sun D; Collaborative Innovation Center of Technology and Equipment for Biological Diagnosis and Therapy in Universities of Shandong, Institute for Advanced Interdisciplinary Research (iAIR), University of Jinan, Jinan, 250022, China. ifc_sundh@ujn.edu.cn.
  • Zhang Y; Collaborative Innovation Center of Technology and Equipment for Biological Diagnosis and Therapy in Universities of Shandong, Institute for Advanced Interdisciplinary Research (iAIR), University of Jinan, Jinan, 250022, China.
  • Wang D; Jinan Institute of Quantum Technology, Jinan, 250101, China.
  • Song W; CETC Deqing Huaying Electronics Co., Ltd., Huzhou, 313200, China.
  • Liu X; Collaborative Innovation Center of Technology and Equipment for Biological Diagnosis and Therapy in Universities of Shandong, Institute for Advanced Interdisciplinary Research (iAIR), University of Jinan, Jinan, 250022, China.
  • Pang J; Collaborative Innovation Center of Technology and Equipment for Biological Diagnosis and Therapy in Universities of Shandong, Institute for Advanced Interdisciplinary Research (iAIR), University of Jinan, Jinan, 250022, China.
  • Geng D; Crystrong Photoelectric Technology Co., Ltd., Jinan, 250100, China.
  • Sang Y; State Key Laboratory of Crystal Materials, Shandong University, Jinan, 250100, China.
  • Liu H; Collaborative Innovation Center of Technology and Equipment for Biological Diagnosis and Therapy in Universities of Shandong, Institute for Advanced Interdisciplinary Research (iAIR), University of Jinan, Jinan, 250022, China. hongliu@sdu.edu.cn.
Light Sci Appl ; 9(1): 197, 2020 Dec 10.
Article em En | MEDLINE | ID: mdl-33303741
ABSTRACT
Recently, integrated photonics has attracted considerable interest owing to its wide application in optical communication and quantum technologies. Among the numerous photonic materials, lithium niobate film on insulator (LNOI) has become a promising photonic platform owing to its electro-optic and nonlinear optical properties along with ultralow-loss and high-confinement nanophotonic lithium niobate waveguides fabricated by the complementary metal-oxide-semiconductor (CMOS)-compatible microstructure engineering of LNOI. Furthermore, ferroelectric domain engineering in combination with nanophotonic waveguides on LNOI is gradually accelerating the development of integrated nonlinear photonics, which will play an important role in quantum technologies because of its ability to be integrated with the generation, processing, and auxiliary detection of the quantum states of light. Herein, we review the recent progress in CMOS-compatible microstructure engineering and domain engineering of LNOI for integrated lithium niobate photonics involving photonic modulation and nonlinear photonics. We believe that the great progress in integrated photonics on LNOI will lead to a new generation of techniques. Thus, there remains an urgent need for efficient methods for the preparation of LNOI that are suitable for large-scale and low-cost manufacturing of integrated photonic devices and systems.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Light Sci Appl Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Light Sci Appl Ano de publicação: 2020 Tipo de documento: Article