Quantum computing is still years away, but Nvidia just built the bridge that will bring it closer -- a quiet integration of ...
UCLA researchers demonstrate diffractive optical processors as universal nonlinear function approximators using linear ...
Can light perform millions of calculations at once without extra materials? A new optical system shows how this can be done.
Artificial intelligence and parallel computing could refine studies of the movement of single molecules inside cells.
Researchers at the University of California, Los Angeles (UCLA) have developed an optical computing framework that performs large-scale nonlinear ...
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Optical system uses diffractive processors to achieve large-scale nonlinear computation
Researchers at the University of California, Los Angeles (UCLA) have developed an optical computing framework that performs ...
The parallel computing market was valued at USD 22.4 billion in 2024 and is projected to reach approximately USD 54.0 billion ...
A protest petition and lawsuit have put the brakes on a proposed $12 billion data center after zoning was initially approved ...
As artificial intelligence grows more powerful, so does its appetite for speed and energy. The quest for faster, smarter ...
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Beyond electronics: Optical system performs feature extraction with unprecedented low latency
Many modern artificial intelligence (AI) applications, such as surgical robotics and real-time financial trading, depend on ...
Researchers at Tsinghua University developed the Optical Feature Extraction Engine (OFE2), an optical engine that processes ...
This creates what you might call the AI workflow paradox: the faster we can generate code, the more critical it becomes to ...
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