Fault-Tolerant Topological Qubits
Engineering Majorana fermion-based qubits to achieve error rates below 10⁻⁸ without active correction. Enables scalable quantum-classical hybrid architectures for cryptographic and material simulation workloads.
12 concurrent scientific initiatives pushing the boundaries of physics, biology, computing, and engineering. Filter by discipline to explore our pipeline from theoretical modeling to commercial deployment.
Engineering Majorana fermion-based qubits to achieve error rates below 10⁻⁸ without active correction. Enables scalable quantum-classical hybrid architectures for cryptographic and material simulation workloads.
Programmable photonic crystals that dynamically refract electromagnetic spectra across radar to optical frequencies. Applications in stealth aerospace, next-gen telecommunications, and medical imaging shielding.
High-fidelity single-base editing without double-strand breaks. Focused on monoculture crops and targeted oncology therapies. Currently undergoing Phase I clinical and agronomic field trials in controlled environments.
AI-driven magnetic confinement optimization for compact deuterium-tritium reactors. Targeting sustained net-positive output (>Q=1.2) within modular 500MW units for decentralized grid deployment by 2032.
Swarm-enabled electrodynamic tethers and laser-ablation drones for active removal of Low Earth Orbit debris. Partners with ESA and commercial satellite operators to ensure long-term orbital sustainability.
Spiking neural network chips mimicking biological synapses. Achieves 90% power reduction vs traditional GPUs for edge inference. Deployed in autonomous logistics fleets and industrial IoT sensors.
Bio-engineered bacterial aggregates that precipitate calcium carbonate upon crack formation. Sequesters atmospheric CO₂ during curing process. Testing for megaproject infrastructure and underwater applications.
High-entropy alloy wires engineered for zero-resistance transmission at ambient temperatures. Solves the cryogenic bottleneck in next-gen power distribution and quantum data bus interconnects.
Genetically modified fungal networks engineered to bioleach and concentrate neodymium, dysprosium, and lithium from tailings and e-waste. Early computational modeling and lab-scale prototyping.
Decentralized reinforcement learning for underwater vehicle fleets. Coordinates multi-agent extraction of polymetallic nodules while minimizing benthic ecosystem disruption via real-time sonar feedback loops.
Ground-based phased array optical systems to accelerate gram-scale probes to 0.2c for interstellar precursor missions. Focusing on beam coherence maintenance and thermal management of sail substrates.
Modular solid-sorbent arrays powered by waste heat streams. Captures CO₂ and injects it into basaltic formations for permanent geological storage. Deployed across 4 pilot sites in Iceland and Oregon.
We're actively seeking academic partnerships, institutional investors, and specialized engineering talent to accelerate our research pipeline.