3 citations · 5 across the 2 of their papers we have counts for
4 papers
Quantifying fault tolerant simulation of strongly correlated systems using the Fermi-Hubbard model
Anjali A. Agrawal, Joshua Job, Tyler L. Wilson +8
Understanding the physics of strongly correlated materials is one of the grand challenge problems for physics today. A large class of scientifically interesting materials, from hig…
Feasibility of accelerating homogeneous catalyst discovery with fault-tolerant quantum computers
Nicole Bellonzi, Alexander Kunitsa, Joshua T. Cantin +16
The industrial manufacturing of chemicals consumes a significant amount of energy and raw materials. In principle, the development of new catalysts could greatly improve the effici…
Anomalies in the pseudogap phase of the cuprates: Competing ground states and the role of umklapp scattering
Neil J. Robinson, Peter D. Johnson, T. Maurice Rice +1
Over the past two decades, advances in computational algorithms have revealed a curious property of the two-dimensional Hubbard model (and related theories) with hole doping: the p…
Pairing symmetry and topological surface state in iron-chalcogenide superconductors
Lun-Hui Hu, P. D. Johnson, Congjun Wu
The symmetries of superconducting gap functions remain an important question of iron-based superconductivity. Motivated by the recent angle-resolved photoemission spectroscopic mea…