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Caltech develops chip that redirects light in 74 femtoseconds

Caltech has created a chip capable of redirecting light in just 74 femtoseconds, using a nanoscale silicon metasurface. This advancement could revolutionize photonic technologies, enhancing data tranโ€ฆ

Caltechโ€™s tiny new chip can steer light in 74 quadrillionths of a second
ScienceDaily โ€” 18 September 2026
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Caltech researchers have developed a groundbreaking chip that can redirect a beam of light in just 74 femtoseconds. This rapid manipulation of light is achieved using a nanoscale silicon metasurface and a second beam of light. The innovation, unveiled recently, could significantly enhance photonic technologies such as communications, computing, and sensing, making them faster and more efficient.

The urgency for advancements in light manipulation technology arises from the increasing demand for faster data transmission and processing capabilities. As global data generation soars, traditional electronic systems struggle to keep up with the speed required for modern applications. Photonic technology, which uses light instead of electrical signals, offers a promising alternative. By achieving such swift control over light, Caltech's new chip represents a major leap forward in meeting these growing demands.

The device operates on the principle of using one beam of light to influence another, allowing for precise direction changes in light paths. The ability to steer light in 74 femtoseconds could lead to breakthroughs in optical networking, where data packets travel at the speed of light, vastly improving internet speeds. Moreover, applications in quantum computing could benefit, as manipulating light at this scale is crucial for developing quantum bits that are more stable and efficient.

Looking ahead, the research team plans to explore the potential applications of this technology in real-world systems. If commercialized, this chip could revolutionize industries reliant on fast data processing and communication, from telecommunications to artificial intelligence. The implications for sensor technology are also significant, potentially leading to devices that can detect and respond to environmental changes faster than ever before. This innovation is a step toward a future where light-based technologies dominate, ushering in a new era of speed and efficiency.

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