According to Chinese researchers, they have made an impressive advancement in 6G technology. Scientists have developed a photonic engine that uses lasers to transmit data through long distances using white light.
They believe that their innovation will provide a way to enhance the performance of future 6G AI-enabled communications. It operates using a ceramic material that is easy to manufacture in bulk, thus can be easily adopted in future applications.
Current VLC technology that employs LEDs is limited to a range of a few meters, while the photonic engine can transmit data up to a distance of 1.2 kilometers.
This research was published in the Cell Press journal "Matter" on May 22nd. Researchers say it could prove to be a significant advance in 6G communication technology.
This new system produces high-quality white light using a laser. Data is transferred through this light. Scientists have stated that this engine primarily emits light in the yellow light region, between 500 and 650 nanometers.
However, it lacks red components, which currently prevents it from achieving the same color accuracy as natural sunlight. Furthermore, its speed is still lower than that of fiber optic networks. To further improve this engine, the team plans to research light-emitting materials that can accelerate data transmission.
The scientists also want to combine the laser system with radio-frequency systems to provide internet service even in bad weather. The Chinese news agency Xia said AI-based technology can automatically adjust data rates. This will create a future 6G network that will be fully connected and highly reliable across space, air and land.
Current 5G networks act like highways, transferring data at very high speeds, but 6G networks will go much further. Future 6G networks could be embedded in smartphones, streetlights, and other devices. These networks will not only transfer data but will also be able to sense and respond to surrounding activities.
Furthermore, with the help of low-Earth orbit satellites, 6G networks could provide high-speed internet even in difficult areas such as deserts, oceans, and mountainous terrain.
According to Chinese researchers, they have made an impressive advancement in 6G technology. Scientists have developed a photonic engine that uses lasers to transmit data through long distances using white light.
They believe that their innovation will provide a way to enhance the performance of future 6G AI-enabled communications. It operates using a ceramic material that is easy to manufacture in bulk, thus can be easily adopted in future applications.
Current VLC technology that employs LEDs is limited to a range of a few meters, while the photonic engine can transmit data up to a distance of 1.2 kilometers.
This research was published in the Cell Press journal "Matter" on May 22nd. Researchers say it could prove to be a significant advance in 6G communication technology.
This new system produces high-quality white light using a laser. Data is transferred through this light. Scientists have stated that this engine primarily emits light in the yellow light region, between 500 and 650 nanometers.
However, it lacks red components, which currently prevents it from achieving the same color accuracy as natural sunlight. Furthermore, its speed is still lower than that of fiber optic networks. To further improve this engine, the team plans to research light-emitting materials that can accelerate data transmission.
The scientists also want to combine the laser system with radio-frequency systems to provide internet service even in bad weather. The Chinese news agency Xia said AI-based technology can automatically adjust data rates. This will create a future 6G network that will be fully connected and highly reliable across space, air and land.
Current 5G networks act like highways, transferring data at very high speeds, but 6G networks will go much further. Future 6G networks could be embedded in smartphones, streetlights, and other devices. These networks will not only transfer data but will also be able to sense and respond to surrounding activities.
Furthermore, with the help of low-Earth orbit satellites, 6G networks could provide high-speed internet even in difficult areas such as deserts, oceans, and mountainous terrain.