Multipurpose silicon photonics signal processor core
Многоцелевой процессорный ядро для сигналов на кремниевой фотонике
2017-09-15
SCID: 54.1/v75unju5
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hexagonal cell waveguide meshmultifunctional photonic integrated circuitsprogrammable photonic processorreconfigurable waveguide meshsilicon photonics
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Abstract (AI)
Integrated photonics changes the scaling laws of information and communication systems offering architectural choices that combine photonics with electronics to optimize performance, power, footprint, and cost. Application-specific photonic integrated circuits, where particular circuits/chips are designed to optimally perform particular functionalities, require a considerable number of design and fabrication iterations leading to long development times. A different approach inspired by electronic Field Programmable Gate Arrays is the programmable photonic processor, where a common hardware implemented by a two-dimensional photonic waveguide mesh realizes different functionalities through programming. Here, we report the demonstration of such reconfigurable waveguide mesh in silicon. We demonstrate over 20 different functionalities with a simple seven hexagonal cell structure, which can be applied to different fields including communications, chemical and biomedical sensing, signal processing, multiprocessor networks, and quantum information systems. Our work is an important step toward this paradigm.Integrated optical circuits today are typically designed for a few special functionalities and require complex design and development procedures. Here, the authors demonstrate a reconfigurable but simple silicon waveguide mesh with different functionalities.
Key Findings
1
A reconfigurable two-dimensional silicon photonic waveguide mesh was implemented as a programmable photonic processor core.
2
Over 20 distinct photonic functionalities were realized on the same hardware by programming the mesh.
3
The demonstrated silicon waveguide mesh uses a simple seven hexagonal cell structure.
4
The device is applicable to diverse fields including communications, chemical and biomedical sensing, signal processing, multiprocessor networks, and quantum information systems.
5
The programmable photonic processor approach reduces the need for many application-specific design/fabrication iterations.
Research Object
Reconfigurable two-dimensional silicon photonic waveguide mesh (seven hexagonal cell structure)
Research Subject
Realization and demonstration of multiple optical signal-processing functionalities (over 20) via programming the silicon waveguide mesh, i.e., its reconfigurability and functional performance for communications, sensing, signal processing, multiprocessor networks, and quantum information systems
Publication Details
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2017-09-15
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