Authors
Ya Wang, Florian Dolde, Jacob Biamonte, Ryan Babbush, Ville Bergholm, Sen Yang, Ingmar Jakobi, Philipp Neumann, Alán Aspuru-Guzik, James D Whitfield, Jorg Wrachtrup
Publication date
2015/8/25
Journal
ACS nano
Volume
9
Issue
8
Pages
7769-7774
Publisher
American Chemical Society
Description
Ab initio computation of molecular properties is one of the most promising applications of quantum computing. While this problem is widely believed to be intractable for classical computers, efficient quantum algorithms exist which have the potential to vastly accelerate research throughput in fields ranging from material science to drug discovery. Using a solid-state quantum register realized in a nitrogen-vacancy (NV) defect in diamond, we compute the bond dissociation curve of the minimal basis helium hydride cation, HeH+. Moreover, we report an energy uncertainty (given our model basis) of the order of 10–14 hartree, which is 10 orders of magnitude below the desired chemical precision. As NV centers in diamond provide a robust and straightforward platform for quantum information processing, our work provides an important step toward a fully scalable solid-state implementation of a quantum chemistry …
Total citations
20142015201620172018201920202021202220232024259162122132923163
Scholar articles
Y Wang, F Dolde, J Biamonte, R Babbush, V Bergholm… - arXiv preprint arXiv:1405.2696