Bulletin of the American Physical Society
2024 APS March Meeting
Monday–Friday, March 4–8, 2024; Minneapolis & Virtual
Session J00: Poster Session I (2pm-5pm CST)
2:00 PM,
Tuesday, March 5, 2024
Room: Hall BC
Abstract: J00.00281 : Simulating conical intersections with multiconfigurational methodson a programmablesuperconducting quantum processor
Presenter:
shoukuan Zhao
(Beijing Academy of Quantum Information Sciences)
Authors:
shoukuan Zhao
(Beijing Academy of Quantum Information Sciences)
Zhen Chen
(Beijing Academy of Quantum Information Sciences)
xiaoxia cai
(Beijing Academy of Quantum Information Sciences,)
diandong tang
(Beijing Normal University)
Collaboration:
We thank Xiaoxiao Xiao and Zi-Ting Wang for their technical helps and fruitful
discussions.
as they have been proved to provide expontential accerelations in
computational effort solving quantum many-body problems .
For the time being, quantum devices available to us are generally
noisy intermediate-scale quantum (NISQ) processors, which are generally
composed of tens (or slightly over one hundred) of qubits, if possible.
Regarding to the exponential growth in usage of gates in fully quantum
algorithms such as quantum phase estimation, hybrid quantum-classical
(HQC) algorithms such as Variational Quantum Eigensolver (VQE), has
been considered as prefered in NISQ-era practices, since they usually
require shallower circuits and less coherence time, although at the
expense of additional classical computing treatments. In both simulation
and real quantum devices, variational quantum algorithms has been
successfully used in acquiring energy diagrams for molecular systems.
Other than energy properties, there are applications such as calculating
electronic/energy transition rate, molecular
spectropy, dynamical polarizabilities
and Born-Oppenheimer/non-adiabatic or quantum dynamics.
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