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Improving Photoluminescence in Silicon Boosts PIC Performance

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MOSCOW, June 17, 2021 — Researchers in Russia have increased photoluminescence (PL) in silicon using germanium quantum dots and a specially designed silicon photonic crystal. Developed by scientists from Skolkovo Institute of Science and Technology (Skoltech), Institute for Physics of Microstructures of the Russian Academy of Sciences, Lobachevsky State University of Nizhny Novgorod, ITMO University, Lomonosov Moscow State University, and A.M. Prokhorov General Physics Institute of the Russian Academy of Sciences, the method and demonstration could lead to optoelectronic components that are compatible with silicon...Read full article

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    Published: June 2021
    Glossary
    optoelectronics
    Optoelectronics is a branch of electronics that focuses on the study and application of devices and systems that use light and its interactions with different materials. The term "optoelectronics" is a combination of "optics" and "electronics," reflecting the interdisciplinary nature of this field. Optoelectronic devices convert electrical signals into optical signals or vice versa, making them crucial in various technologies. Some key components and applications of optoelectronics include: ...
    germanium
    A crystalline semiconductor material that transmits in the infrared.
    integrated photonics
    Integrated photonics is a field of study and technology that involves the integration of optical components, such as lasers, modulators, detectors, and waveguides, on a single chip or substrate. The goal of integrated photonics is to miniaturize and consolidate optical elements in a manner similar to the integration of electronic components on a microchip in traditional integrated circuits. Key aspects of integrated photonics include: Miniaturization: Integrated photonics aims to...
    photoluminescence
    Photoluminescence is a phenomenon in which a material absorbs photons (light) at one wavelength and then re-emits photons at a longer wavelength. This process occurs when electrons in the material are excited to higher energy states by absorbing photons and subsequently return to lower energy states, emitting photons in the process. The emitted photons have less energy and longer wavelengths than the absorbed photons. Photoluminescence can be broadly categorized into two types: ...
    Research & TechnologySkoltechSkolkovo Institute of Science and TechnologyEuropeeducationLight SourcesoptoelectronicsOpticsCommunicationsPICsConsumersiliconsilicon and germaniumgermaniumintegrated photonicsintegrated photonics circuitsintegrated photonics componentsIntegrated photonics designphotoluminescenceMaterialssemiconductor materials

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