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XENON Quantum

World-class hybrid quantum solutions, built for your applications

Every XENON quantum solution is build from decades of  experience and rock-solid architectures. 

Werner Scholz

CTO and Head of R&D

XENON Quantum

World-class hybrid quantum solutions

Werner

Scholz

CTO and Head of R&D

1, 0, 1 and 0

Quantum particles and qubits can have multiple states simultaneously

-273.15 Kelvin

Quantum computers (currently) require very cold temperatures to operate

2015

University of NSW developed the first silicon based Quantum logic gate.

 

1, 0, 1 and 0

Quantum particles and qubits can have multiple states simultaneously

What quantum computing Actually Is

What is quantum computing?

Quantum computers use atomic particles (usually electrons or protons) to be the foundation of their calculations. They are called qubits and like a traditional transistor have value of 1 or 0, but also have a value that is both 1 and 0. This allows quantum computers to be dense and extremely fast. 

Quantum computers work by calculating on qubits rather than traditional transistor logic gates. Using qubits, quantum computers can exploit the mysterious physics of quantum, including entanglement and superposition in their calculations. 

By using entanglement and superposition properties of qubits, quantum computers can performance massive calculations quickly and in parallel. A small quantum computer will be as powerful as the largest HPC clustered computer. 

Quantum computing is still very much a research project, although commercially available solutions are very close. The biggest challenges currently are the extremely cold temperatures required to keep qubits stable (and then this uses a lot of electricity). While superposition and entanglement give quantum computing its power, they are also very unstable and lead to a lot of errors in calculations. Managing these errors is a field of study in and of itself. 

How XENON Makes
It Possible

We understand your workload today, and your plans for tomorrow

Being vendor agnostic, we bring best-of-breed solutions together in a cost-effective manner to build your quantum solution beyond limits.

XENON
Deployment Stories

XENON has been at the forefront of high performance computing solutions since 1996. We work with customers to build beyond limits. These are their stories.

Quantum Simulation and Solutions Built for Performance and Scale

Powering quantum workloads with the speed, resilience, and scalability today’s most demanding applications require. From simulations, quantum programming and hybrid quantum-HPC architectures, we deliver the infrastructure to take you beyond limits.

The XENON
Architectual Principle

XENON designs solutions for clear workload requirements, predictable cost models and real-word scaling plans, so your infrastructure remains controllable and economically defensible over time.

Architecture

Blueprints for complex and parallel systems designed around throughput and workloads, not convenience.

Infrastructure

The complete picture. From networking to storage and compute layer, everything designed for harmony. 

Data Flows

High-throughput data pipelines that keep your compute cores fed and never idle.

Security & Governance

Zero-trust compliance that protects sensitive workloads.

Production Ready

Real-time performance at sustained petaFLOP scale. 

Managed Services

Your quantum solution, fully managed so your teams ship results, not ops tickets.

Technology & Vendor
Ecosystem

Quantum solutions are built on ecosystems, not single vendors.

Technology & Vendor Ecosystem

Quantum solutions are built on ecosystems, not single vendors.

Ready to buildQuantum?

Talk to XENON’s experts today