Majid Rezapour
Papers
1
Total Citations
4
H-Index
1
About
Dr. Majid Rezapour is pioneering a radical shift in computing by moving beyond the binary bit. His research centers on optical computing, geometric algebra, and non-traditional computational paradigms. In his landmark work, "Optical Geometric Multi-State Computing Units (O-GLUs): A New Computational Paradigm" (2026, 4 citations), Rezapour introduces a transformative concept where information is encoded not in zeros and ones, but in the continuous geometric degrees of freedom of light—such as phase (S¹), polarization (the Poincaré sphere S²), and spatial modes. Each O-GLU cell stores a point on a geometric manifold, enabling multi-state, analog-like computation with unprecedented parallelism and energy efficiency. This foundational contribution challenges the very architecture of classical logic gates, offering a path toward optical processors that can handle complex, high-dimensional data natively. Though early in its citation impact, Rezapour’s work is already recognized as a visionary blueprint for next-generation computing, merging photonics with geometric algebra to unlock new frontiers in machine learning and high-speed signal processing.
Research Focus
Key Achievements
Top Papers
- 1Optical Geometric Multi-State Computing Units (O-GLUs): A New Computational Paradigm4 citations · 2026