Lithium niobate photonics: Unlocking the electromagnetic spectrum

Фотоника ниобата лития: раскрывая электромагнитный спектр
John E. Bowers, Lin Chang, Marko Lončar, Mian Zhang, Mengjie Yu, Arnan Mitchell, Carsten Langrock, M. M. Fejer, Andreas Boes, Qiang Lin
2023-01-05

LN photonic platformselectromagnetic spectrum coveragelithium niobate (LN)nonlinear and electro-optic applicationsquantum optics
Lithium niobate (LN), first synthesized 70 years ago, has been widely used in diverse applications ranging from communications to quantum optics. These high-volume commercial applications have provided the economic means to establish a mature manufacturing and processing industry for high-quality LN crystals and wafers. Breakthrough science demonstrations to commercial products have been achieved owing to the ability of LN to generate and manipulate electromagnetic waves across a broad spectrum, from microwave to ultraviolet frequencies. Here, we provide a high-level Review of the history of LN as an optical material, its different photonic platforms, engineering concepts, spectral coverage, and essential applications before providing an outlook for the future of LN.
1
A mature manufacturing and processing industry exists for high-quality LN crystals and wafers, enabled by high-volume commercial applications.
2
LN can generate and manipulate electromagnetic waves across a broad spectrum, from microwave to ultraviolet frequencies.
3
Lithium niobate (LN) has been widely used across applications from communications to quantum optics due to its electromagnetic-wave generation and manipulation abilities.
4
The paper reviews LN's history, photonic platforms, engineering concepts, spectral coverage, and essential applications, and provides an outlook for its future.

Lithium niobate (LN) photonic platforms (crystals and wafers) used for generating and manipulating electromagnetic waves

The ability of LN photonics to generate and manipulate electromagnetic waves across a broad spectrum (microwave to ultraviolet), including platform types, engineering concepts, spectral coverage, and key applications

Publication Details
Publication Date
2023-01-05
Journal
Publisher
ISSN
Cited by
671
Access Type
Author Information
Authors
John E. Bowers
Lin Chang
Marko Lončar
Mian Zhang
Mengjie Yu
Arnan Mitchell
Carsten Langrock
M. M. Fejer
Andreas Boes
Qiang Lin
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%