QunaSys develops quantum algorithms and software tools, such as the QURI SDK, to enhance the practical application of quantum computing in industries like materials science, chemistry, and pharmaceuticals. The company collaborates with businesses and research institutions to optimize computational processes, enabling them to tackle complex industrial challenges more efficiently.
Funding
$24.2M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.
Founders
Product
Problem
Current quantum computing software development often requires specialized expertise and is not easily accessible to researchers and engineers in various industries. Existing tools may lack the necessary capabilities to efficiently translate complex industrial challenges into quantum algorithms ready for execution on quantum hardware.
Solution
QunaSys develops quantum algorithms and software, including the QURI SDK, to facilitate the practical application of quantum computing across industries like materials science, chemistry, and pharmaceuticals. The company focuses on bridging the gap between quantum hardware capabilities and real-world industrial problems by providing tools that streamline the development and optimization of quantum algorithms. Through collaborations with businesses and research institutions, QunaSys aims to enhance computational processes, enabling users to tackle complex challenges more efficiently and accelerate the adoption of quantum computing in practical applications.
Target Audience
The primary target audience includes researchers, engineers, and businesses in materials science, chemistry, and pharmaceuticals seeking to leverage quantum computing to solve complex industrial problems.
Features
- QURI SDK: A software development kit designed to enhance the efficiency of quantum algorithm research and development.
- Development of quantum algorithms tailored for applications in materials science, chemistry, and pharmaceuticals.
- Collaborative research programs with corporate and academic partners to identify and address industry-specific challenges.
- Focus on algorithms for near-term quantum computers and development of error mitigation techniques.
- Development of quantum chemistry calculation methods, such as Quantum-Selected Configuration Interaction (QSCI).
- Exploration of Computer-Aided Engineering (CAE) applications for future fault-tolerant quantum computers (FTQC).