Digitized counterdiabatic quantum algorithm for protein folding

P Chandarana, NN Hegade, I Montalban, E Solano… - Physical Review …, 2023 - APS
We propose a hybrid classical-quantum digitized counterdiabatic algorithm to tackle the
protein-folding problem on a tetrahedral lattice. Digitized counterdiabatic quantum …

Symmetric derivatives of parametrized quantum circuits

D Wierichs, RDP East, M Larocca, M Cerezo… - arXiv preprint arXiv …, 2023 - arxiv.org
Symmetries are crucial for tailoring parametrized quantum circuits to applications, due to
their capability to capture the essence of physical systems. In this work, we shift the focus …

Framework for learning and control in the classical and quantum domains

SS Vedaie, A Dalal, EJ Páez, BC Sanders - Annals of Physics, 2023 - Elsevier
Control and learning are key to technological advancement, both in the classical and
quantum domains, yet their interrelationship is insufficiently clear in the literature, especially …

Information flow in parameterized quantum circuits

A Anand, LB Kristensen, F Frohnert… - Quantum Science …, 2024 - iopscience.iop.org
In this work, we introduce a new way to quantify information flow in quantum systems,
especially for parameterized quantum circuits (PQCs). We use a graph representation of the …

Neutron-proton pairing correlations described on quantum computers

J Zhang, D Lacroix, Y Beaujeault-Taudiere - arXiv preprint arXiv …, 2024 - arxiv.org
The ADAPT-VQE approach is used to solve the neutron-proton pairing problem in atomic
nuclei. This variational approach is considered today as one of the most powerful methods …

Hamiltonians, groups, graphs and ans\" atze

A Anand, KR Brown - arXiv preprint arXiv:2312.17146, 2023 - arxiv.org
One promising application of near-term quantum devices is to prepare trial wavefunctions
using short circuits for solving different problems via variational algorithms. For this purpose …