09/16/2024 | Press release | Archived content
Late last year, in collaboration with Trinity College Dublin and IBM, Algorithmiq demonstrated the utility of TEM, by successfully running one of the largest scale error mitigation experiments to date on IBM's hardware, achieving 2,402 entangling gates. Six months later, detailed in a paper soon to be published on the arXiv, the Algorithmiq team has now pushed the boundaries even further, successfully conducting an experiment that sees the use of 91 active qubits x 91 layers of entangling gates, resulting in a total of 4,095 entangling gates.
This marks the largest scale digital simulation of 'quantum chaos', which refers to the study of complex and unpredictable behaviours of particles at the quantum level. By understanding this chaotic behavior, we can advance research and push the boundaries of science in areas like material science, medicine, and technology.
This progress and heightened level of dependability and precision in digital quantum simulations is critical in the discovery of new physics and pushing the boundaries of what current quantum technology can achieve. With TEM, the door opens to more efficient utility-scale experiments.