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Synapse-Like Phototransistor Enables Persistent, Low-Energy Optical Switching

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GOLDEN, Colo., May 11, 2021 — Researchers at the U.S. Department of Energy’s (DOE) National Renewable Energy Laboratory (NREL) created a phototransistor that allows long-lived persistent photoconductivity (PPC), which is a form of optical memory. The new structure is a heterojunction between perovskite semiconductors and carbon nanotubes. The device could enable optical switching with low energy consumption for potential use in sensors and artificial neural networks and in applications such as self-driving vehicles. The researchers combined metal-halide perovskite nanocrystals with a network of single-walled...Read full article

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    Published: May 2021
    Glossary
    phototransistor
    A phototransistor is a type of semiconductor device that converts light energy into electrical signals. Similar to a regular transistor, it consists of a semiconductor material (such as silicon) with three terminals: collector, emitter, and base. However, in a phototransistor, light incident on the semiconductor creates electron-hole pairs, which influence the conductivity of the semiconductor material. This change in conductivity leads to a corresponding change in the flow of current between...
    computer vision
    Computer vision enables computers to interpret and make decisions based on visual data, such as images and videos. It involves the development of algorithms, techniques, and systems that enable machines to gain an understanding of the visual world, similar to how humans perceive and interpret visual information. Key aspects and tasks within computer vision include: Image recognition: Identifying and categorizing objects, scenes, or patterns within images. This involves training...
    neural network
    A computing paradigm that attempts to process information in a manner similar to that of the brain; it differs from artificial intelligence in that it relies not on pre-programming but on the acquisition and evolution of interconnections between nodes. These computational models have shown extensive usage in applications that involve pattern recognition as well as machine learning as the interconnections between nodes continue to compute updated values from previous inputs.
    optical memory
    Optical memory is a type of data storage technology that uses light to read and write information. It typically involves the use of lasers to encode data onto an optical medium, such as a disc, and to retrieve that data by reading the reflected light patterns. Storage medium: Optical memory systems use various types of discs, including CDs (compact discs), DVDs (digital versatile discs), and Blu-ray discs, as the primary storage medium. These discs are made of materials that can reflect...
    optical switching
    Optical switching refers to the process of controlling the routing or transmission of optical signals within a network using various techniques to selectively switch or redirect optical paths. This is essential in optical communication systems, where data is transmitted as light signals over optical fibers. Optical switching technologies enable efficient, high-speed, and flexible routing of optical signals, enhancing the performance and scalability of optical networks. There are several types...
    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: ...
    photoconductivity
    The conductivity increase exhibited by some nonmetallic materials, resulting from the free carriers generated when photon energy is absorbed in electronic transitions. The rate at which free carriers are generated, the mobility of the carriers, and the length of time they persist in conducting states (their lifetime) are some of the factors that determine the amount of conductivity change.
    Research & TechnologyeducationNRELphototransistorSensors & Detectorscomputer visionneural networkMaterialsperovskitessemiconductorsoptical memoryoptical switchingself-driving (SD) vehiclescesiumoptoelectronicsmemoryphotoconductivity

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