Explore cutting-edge science and technology through fully interactive 3D documentaries. Click any preview to interact, or open fullscreen for the full experience.
Vision-Language-Action models bridging artificial intelligence with embodied robotics. Humanoid systems that perceive, reason, and act in the real world.
Brain-inspired silicon architectures utilizing spiking neural networks. Ultra-low power computing mimicking biological neural dynamics.
Space-based computing infrastructure leveraging orbital mechanics. Distributed processing systems beyond Earth's atmosphere for next-gen applications.
Revolutionary concepts for deploying data center infrastructure in space. Leveraging vacuum cooling and solar power for sustainable hyperscale computing.
Topological edge states and bulk-boundary correspondence in the Su-Schrieffer-Heeger model. Interactive quantum physics simulation.
Wave propagation in metamaterial structures. Unidirectional acoustic waveguides for next-generation RF and 5G/6G telecommunications.
Neural prediction and error minimization in biological and artificial systems. How the brain constructs reality through hierarchical prediction.
Exploring complex physics concepts through engaging visual demonstrations — from quantum mechanics to acoustic phenomena.
TAMS technology — converting noise into energy through acoustic metamaterial engineering.
Quantum mechanics & wave phenomena — how entanglement enables unhackable communication networks.
The architecture of machine intelligence — neural networks, backpropagation, and emergent reasoning.
Interactive simulation built with Three.js and WebGL using RK4 Integration. Modeling GW170817 parameters from Abbott et al. 2019.
Phi-bits (phase-bits) as classical acoustic analogs to quantum bits. Goal: 50 phi-bit quantum-inspired platform accessing 65,536 dimensional Hilbert space.
Thermoacoustic Meta-Structures (TAMS) achieving 5+ dB noise reduction. Patent WO2025128348A1. Tested at DFW Airport.