Tag

6g Communication

All articles tagged with #6g communication

science-and-technology2 years ago

"Quasiparticles Unleash Super-Bright Light with Black Hole-like Crystals"

Scientists have developed a crystal that can bend light like a black hole, a phenomenon known as pseudogravity. This breakthrough could have applications in 6G communication technology, enabling wireless transmission of information at ultrahigh speeds. Additionally, the crystal's ability to mimic the effects of gravitational lensing could be used to study quantum gravity, a theory that combines quantum mechanics and Einstein's theory of relativity. The crystal, created by distorting photonic crystals, could open new pathways in the field of graviton physics and has the potential to revolutionize next-generation communication technology.

science-and-technology2 years ago

"Pseudogravity: Distorted Crystals Bend Light, Mimicking Black Holes"

Scientists have developed a crystal that can bend light similar to how black holes do, a phenomenon known as pseudogravity. This breakthrough could have applications in 6G communication technology, enabling wireless transmission of information at ultrahigh speeds. Additionally, the crystal's ability to mimic gravitational lensing could aid in the study of quantum gravity, a theory that combines quantum mechanics and Einstein's theory of relativity. The crystal, created by distorting photonic crystals, has the potential to manipulate light for next-generation communication and advance the field of graviton physics.

science-and-technology2 years ago

Unlocking the Secrets of Light: From Einstein's Theories to Physics-Defying Quasiparticles

Scientists have manipulated light to behave as if influenced by gravity using distorted photonic crystals, opening up possibilities for advancements in optics and materials science. This breakthrough could also have implications for the development of 6G communication. By introducing lattice distortion to photonic crystals, researchers were able to manipulate the photonic band structure, resulting in a curved beam trajectory similar to light passing by a massive celestial body. The experiment successfully demonstrated the deflection of terahertz waves, showcasing the potential for in-plane beam steering within the terahertz range, which could be utilized in 6G communication.