Quantum Computing Research
Quantum algorithm development and post-quantum cryptography.
The Engineering Challenge of Quantum Computing
Quantum computers will soon break classical encryption. We research algorithms that harness quantum power, and cryptography that resists it.
Developing a Proof of Concept is easy. Engineering a reliable, scalable, and secure system for production is incredibly difficult. Our research is directly targeted at solving enterprise-grade problems within the Quantum Computing space.
Future-Proof Security
Implementing NIST-approved Post-Quantum Cryptography algorithms today.
Optimization Supremacy
Solving complex logistical routing problems exponentially faster.
Quantum Simulation
Modeling molecular interactions for material science and pharma.
Hybrid Architectures
Integrating classical HPC infrastructure with quantum QPUs.
Core Research Offerings
How we apply our foundational research to solve complex enterprise problems.
PQC Migration
Auditing and upgrading your infrastructure to Post-Quantum Cryptography.
Algorithm Research
Developing custom VQA and QAOA algorithms for your industry.
Quantum Readiness
Strategic consulting on how quantum will disrupt your sector.
Research & Implementation Methodology
Problem Formulation
Translating classical business problems into quantum Hamiltonians.
Circuit Design
Designing optimized quantum circuits with minimal gate depth.
Simulation
Testing the algorithm on high-performance classical simulators.
Hardware Execution
Running the job on actual QPUs and applying error mitigation.
Technology Stack
We utilize state-of-the-art frameworks and hardware.
Frameworks
- Qiskit
- Cirq
- PennyLane
- TKET
Hardware Providers
- IBM Quantum
- IonQ
- Rigetti
- AWS Braket
Cryptography
- Kyber
- Dilithium
- SPHINCS+
Languages
- Python
- C++
- Qasm
Research FAQ
Explore Other Research Areas
Ready to Operationalize Quantum Computing?
Partner with our research division to build sovereign, secure, and highly optimized systems for your enterprise.