An Introduction to Nonlinear Integrated Photonics: Structures and Devices
Введение в нелинейную интегрированную фотонику: структуры и устройства
2023-03-07
SCID: 54.1/q345qnnj
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integrated optics technologieslithium niobatenonlinear integrated photonicstwo-dimensional materialswaveguide structures
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Abstract (AI)
The combination of integrated optics technologies with nonlinear photonics, which has led to growth of nonlinear integrated photonics, has also opened the way to groundbreaking new devices and applications. In a companion paper also submitted for publication in this journal, we introduce the main physical processes involved in nonlinear photonics applications and discuss the fundaments of this research area. The applications, on the other hand, have been made possible by availability of suitable materials with high nonlinear coefficients and/or by design of guided-wave structures that can enhance a material's nonlinear properties. A summary of the traditional and innovative nonlinear materials is presented there. Here, we discuss the fabrication processes and integration platforms, referring to semiconductors, glasses, lithium niobate, and two-dimensional materials. Various waveguide structures are presented. In addition, we report several examples of nonlinear photonic integrated devices to be employed in optical communications, all-optical signal processing and computing, or in quantum optics. We aimed at offering a broad overview, even if, certainly, not exhaustive. However, we hope that the overall work will provide guidance for newcomers to this field and some hints to interested researchers for more detailed investigation of the present and future development of this hot and rapidly growing field.
Key Findings
1
Availability of materials with high nonlinear coefficients and guided-wave structure design can enhance a material's nonlinear properties for applications.
2
Nonlinear integrated photonics combines integrated optics and nonlinear photonics enabling new devices and applications.
3
The paper reviews fabrication processes and integration platforms across semiconductors, glasses, lithium niobate, and two-dimensional materials.
4
The work provides a broad overview intended to guide newcomers and suggest directions for future research in the rapidly growing field.
5
Various waveguide structures are presented and several nonlinear photonic integrated devices are reported for optical communications, all-optical signal processing/computing, and quantum optics.
Research Object
Nonlinear integrated photonic structures and devices (guided-wave waveguide platforms and integrated components using semiconductors, glasses, lithium niobate, and two-dimensional materials)
Research Subject
Fabrication, integration platforms, waveguide structures, and examples of device performance/applications enabling enhanced nonlinear optical interactions for optical communications, all-optical signal processing/computing, and quantum optics
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2023-03-07
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