Scaling Quantum Advantage

Aevum Zenth's Quantum Division engineers fault-tolerant processors, distributed quantum networks, and hybrid classical-quantum systems for enterprise-scale computational breakthroughs.

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Core Processing Platforms

Modular, scalable quantum computing infrastructure designed for real-world workloads and scientific discovery.

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Core-128 Superconducting

High-coherence transmon qubits with 3D integrated microwave control. Optimized for optimization and simulation workloads.

128 Qubits T1: 180µs 99.4% Fidelity 15mK
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Zenth Ion-Array

Trapped-ion platform featuring optical tweezers and photonic interconnects. Exceptional coherence for precision simulation.

64 Logical Qubits T1: 12s 99.8% Fidelity Vacuum Chamber
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Quantum Network Mesh

Distributed quantum computing via entanglement swapping and quantum repeaters. Enables cross-datacenter quantum workloads.

6 Node Clusters 10 Gbps Link 92% Bell State Fiber Optic
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Hybrid Classical-Quantum OS

ZenthOS orchestrates quantum circuit compilation, error mitigation, and classical-quantum data exchange in real-time.

Real-time JIT Noise-Aware API Ready Multi-Backend

System Specifications

Verified metrics from independent validation and internal characterization labs.

Metric Core-128 (Superconducting) Zenth Ion-Array (Trapped Ion) Quantum Network Mesh
Physical Qubits 128 64 (Logical: 32) 384 (Distributed)
Coherence Time (T1) 180 µs 12.0 s Network Latency: 2.4 ms
Gate Fidelity 99.42% 99.87% 92.1% (Entanglement)
Error Correction Surface Code (d=5) Color Code (d=7) Entanglement Purification
Operating Environment 15 mK Dilution Refrigerator Ultra-High Vacuum (10⁻¹¹ mbar) Standard Datacenter + Fiber
Compilation Stack ZenthOS v4.2 ZenthOS v4.2 ZenthOS Network Suite

Solving Intractable Problems

Deploying quantum advantage across high-value industry verticals.

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Drug Discovery

Accelerating molecular simulation and protein folding predictions for next-generation therapeutics.

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Cryptography

Post-quantum cryptographic development and quantum key distribution infrastructure.

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Financial Modeling

Monte Carlo simulation optimization and real-time risk assessment for complex derivatives.

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Logistics Optimization

Solving NP-hard routing and scheduling problems across global supply chain networks.

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Materials Science

Designing high-efficiency batteries, catalysts, and novel polymers at the quantum level.

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Quantum ML

Hybrid quantum-classical neural networks for pattern recognition and data compression.

Recent Breakthroughs

Peer-reviewed research and whitepapers from Aevum Zenth Quantum Labs.

Fault-Tolerant Surface Code Implementation on 128-Qubit Architectures

Dr. Elena Rostova, Dr. Kenji Tanaka · Nature Quantum Information · 2025

Error Correction

Distributed Entanglement Scaling via Photonic Interconnects

Quantum Network Engineering Team · Physical Review Letters · 2025

Networking

Noise-Aware Quantum Circuit Compilation for Hybrid Workloads

ZenthOS Software Division · ACM Transactions on Quantum Computing · 2024

Software

Quantum Advantage in Combinatorial Optimization: A Production Case Study

Enterprise Applications Group · IEEE Transactions on Quantum Engineering · 2024

Applications

Ready to Access Aevum Quantum?

Whether you're an academic researcher, enterprise engineer, or strategic partner, our quantum infrastructure is available for collaborative development and commercial deployment.

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