Qedma and HQC2 Demonstrate Unprecedented Accuracy in Quantum Chemistry on Quantum Computers
Water molecule case study to be presented at Q2B
In the study, researchers at HQC2 and Qedma explored the potential energy surface of a water molecule using an orbital-optimized variational ansatz on IBM's Aachen quantum processor with Qedma's QESEM error reduction software. Led by Prof.
The research achieved exceptionally high accuracy for quantum computation, a 30–50× improvement over the raw results achieved without QESEM error mitigation.
Today's quantum processors are noisy, which can make quantum chemistry calculations unreliable and inaccurate. QESEM mitigates the impact of noise in current quantum computers. Rather than waiting for large-scale, fully fault-tolerant quantum computers, QESEM's patented approach unlocks the ability to execute larger and more complex quantum workloads while producing accurate results. It is currently being used by leading enterprises, academic institutions, and research laboratories around the world.
"We're extremely pleased with the results of this collaborative study that clearly illustrates how our error mitigation software can help bridge the gap between today's noisy quantum devices and the high-accuracy quantum computations required for future scientific applications," said Qedma CEO and Co-founder Dr.
"Accuracy is particularly important in quantum chemistry, where even relatively small errors can affect the reliability of calculated molecular properties and energies," said Prof.
Qedma recently demonstrated quantum advantage together with IBM, accurately resolving the dynamics of quantum materials unseen in classical simulation. The results marked the first time quantum advantage has been achieved with commercially available hardware and software, reaching a paradigm where multiple state-of-the-art classical approaches failed to provide consistent, reliable answers.
Qedma Presentations at Q2B
- Quantum Advantage: Modeling Physics Beyond Classical Capabilities by
- Water Potential Energy Surface Study on a Quantum Computer with QESEM's High-Accuracy Error Mitigation by
About Qedma Quantum Computing
Qedma is accelerating the path to practical quantum computing by dramatically reducing the impact of hardware errors. Its hardware-agnostic software, QESEM, enables researchers and enterprises to run larger and more complex quantum algorithms while obtaining more accurate and reliable results on today's quantum computers. By overcoming one of the biggest barriers facing the industry, Qedma helps unlock scientific discoveries and enables users to push beyond the limits of current quantum hardware. Qedma was founded by Dr.
About HQC2
HQC2 (https://hqc2.github.io/) is a collaboration research project funded by the Novo Nordisk Foundation, bringing together the research groups of Prof. Stephan P. A. Sauer (University of Copenhagen), Prof. Sonia Coriani (Technical University of Denmark), and Prof. Jacob Kongsted (University of Southern Denmark). HQC2 specializes in the development of Quantum Chemistry algorithms and software designed to exploit the capabilities of NISQ and emerging early fault tolerant quantum computers. A key outcome of the project is the SlowQuant software package, which enables the calculation of ground- and excited-state energies as well as molecular spectroscopic properties, including UV/Vis, CD and NMR spin-spin coupling constants, on quantum computing platforms.
Qedma Media Contact:
Diane McKaye
Si14 Global Communications
[email protected]
View original content:https://www.prnewswire.com/news-releases/qedma-and-hqc2-demonstrate-unprecedented-accuracy-in-quantum-chemistry-on-quantum-computers-302873513.html
SOURCE Qedma
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