Fault-Tolerant Quantum Algorithm for Symmetry-Adapted Perturbation Theory
The efficient computation of observables beyond the total energy is a key challenge and opportunity for fault-tolerant quantum computing approaches in quantum chemistry. Here, we consider the symmetry-adapted perturbation-theory (SAPT) components of the interaction energy as a prototypical example o...
Hlavní autoři: | Cristian L. Cortes, Matthias Loipersberger, Robert M. Parrish, Sam Morley-Short, William Pol, Sukin Sim, Mark Steudtner, Christofer S. Tautermann, Matthias Degroote, Nikolaj Moll, Raffaele Santagati, Michael Streif |
---|---|
Médium: | Článek |
Jazyk: | English |
Vydáno: |
American Physical Society
2024-03-01
|
Edice: | PRX Quantum |
On-line přístup: | http://doi.org/10.1103/PRXQuantum.5.010336 |
Podobné jednotky
-
Fault-tolerant quantum computation of molecular observables
Autor: Mark Steudtner, a další
Vydáno: (2023-11-01) -
Estimation of Electrostatic Interaction Energies on a Trapped-Ion Quantum Computer
Autor: Pauline J. Ollitrault, a další
Vydáno: (2024-03-01) -
Efficient quantum computation of molecular forces and other energy gradients
Autor: Thomas E. O'Brien, a další
Vydáno: (2022-12-01) -
What can we learn from molecular dynamics simulations for GPCR drug design?
Autor: Christofer S. Tautermann, a další
Vydáno: (2015-01-01) -
Isospin Symmetry Breaking in Non-Perturbative QCD
Autor: Abdel Nasser Tawfik
Vydáno: (2023-02-01)