Zenth Quantum Labs
Pioneering fault-tolerant quantum architectures and enterprise-grade quantum advantage across optimization, cryptography, and molecular simulation.
Bridging Theoretical Physics and Enterprise Computing
Zenth Quantum Labs operates at the intersection of condensed matter physics, computer science, and applied mathematics. Our mandate is to transition quantum systems from experimental prototypes to reliable, scalable computational assets that integrate seamlessly with Aevum Zenth's broader enterprise infrastructure.
We maintain a parallel-track development philosophy: advancing physical qubit architectures while simultaneously engineering software stacks, error correction protocols, and hybrid classical-quantum workflows that deliver measurable value long before full fault tolerance is achieved.
Core Divisions
Quantum Hardware
Development of superconducting transmon arrays, topological qubit prototypes, and cryogenic control electronics with sub-microkelvin stability.
Superconducting CryogenicsAlgorithms & Compilers
Quantum circuit optimization, variational algorithms, quantum machine learning frameworks, and hybrid classical-quantum orchestration.
VQE/QAOA QMLError Correction
Surface code implementation, logical qubit synthesis, real-time decoding pipelines, and fault-tolerance threshold optimization.
Surface Codes Logical QubitsZQ-Alpha 128 Processor
| Parameter | Specification | Status |
|---|---|---|
| Physical Qubits | 128 | Operational |
| Gate Fidelity (2Q) | 99.98% | Verified |
| Clock Cycle | 20 ns | Fixed |
| Cryogenic Base Temp | 15 mK (Dilution Refrigerator) | Stable |
| Coherence Time (T2) | >300 µs | Optimized |
| Software Stack | ZQ SDK v3.1 • Python/C++ • QIR Support | Public Beta |
| Cloud Access | Sandboxed via Aevum Quantum Cloud | Invite-Only |
Milestones & Trajectory
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