Quantum Computing
About This Service
We help organizations understand, prepare for, and experiment with quantum computing to solve computational problems that are intractable for classical computers. Quantum computing represents a fundamental shift in computational capability that will transform industries including pharmaceuticals, materials science, finance, logistics, and cryptography over the coming decades. While large-scale fault-tolerant quantum computers remain years away, organizations that begin building quantum capabilities today will be positioned to capture competitive advantage as the technology matures. Our quantum computing practice begins with education and awareness, helping leadership and technical teams understand quantum computing fundamentals, the types of problems where quantum advantage is anticipated, realistic timelines, and the implications for their industry. We conduct quantum readiness assessments evaluating your computational challenges against quantum algorithm applicability, existing intellectual property and data assets relevant to quantum advantage, and organizational readiness for quantum adoption. For organizations ready to begin hands-on experimentation, we provide quantum algorithm development services, implementing and testing quantum algorithms on currently available noisy intermediate-scale quantum devices and classical simulators. Our quantum developers translate business problems into quantum algorithmic approaches including variational quantum algorithms for optimization, quantum machine learning for pattern recognition, and quantum chemistry simulation for materials and pharmaceutical applications. We provide guidance on quantum software development toolkits including Qiskit, Cirq, PennyLane, and cloud-based quantum computing access through AWS Braket, Azure Quantum, and direct IBM and Google quantum services. We also address the critical topic of post-quantum cryptography, helping organizations inventory their cryptographic assets, understand their vulnerability to quantum attacks, and develop migration roadmaps to quantum-resistant algorithms. For organizations in regulated industries or those with long-lived sensitive data, we emphasize the urgency of beginning cryptographic migration given the possibility of harvest-now-decrypt-later attacks. Our quantum practice is grounded in honesty about the current state of the technology—we clearly distinguish between what is possible today, what is anticipated in the near term, and what remains speculative, enabling informed strategic decisions.
Technologies
Use Cases
- Optimization Problem Solving
- Quantum Machine Learning Research
- Molecular and Materials Simulation
- Post-Quantum Cryptography Preparation
- Quantum Readiness Assessment