Y. Salathé, M. Mondal, et al.
Physical Review X
We propose an efficient protocol for digital quantum simulation of quantum chemistry problems and enhanced digital-analog quantum simulation of transport phenomena in biomolecules with superconducting circuits. Along these lines, we optimally digitize fermionic models of molecular structure with single-qubit and two-qubit gates, by means of Trotter-Suzuki decomposition and Jordan-Wigner transformation. Furthermore, we address the modelling of system-environment interactions of biomolecules involving bosonic degrees of freedom with a digital-analog approach. Finally, we consider gate-truncated quantum algorithms to allow the study of environmental effects.
Y. Salathé, M. Mondal, et al.
Physical Review X
Ryan V. Mishmash, Tanvi P. Gujarati, et al.
JCTC
Gabriele Agliardi, Corey O’Meara, et al.
Quantum Science and Technology
Yuri Alexeev, Maximilian Amsler, et al.
Future Generation Computer Systems