Nuclear forces for precision nuclear physics: A collection of perspectives

I Tews, Z Davoudi, A Ekström, JD Holt, K Becker… - Few-Body Systems, 2022 - Springer
This is a collection of perspective pieces contributed by the participants of the Institute for
Nuclear Theory's Program on Nuclear Physics for Precision Nuclear Physics which was held …

Chiral superconductivity in UTe2 probed by anisotropic low-energy excitations

K Ishihara, M Roppongi, M Kobayashi… - Nature …, 2023 - nature.com
Chiral spin-triplet superconductivity is a topologically nontrivial pairing state with broken time-
reversal symmetry, which can host Majorana quasiparticles. The heavy-fermion …

Orbital selective Kondo effect in heavy fermion superconductor UTe2

B Kang, S Choi, H Kim - npj Quantum Materials, 2022 - nature.com
Heavy fermion systems emerge from the collective Kondo effect, and their superconductivity
can serve as a promising platform for realizing next-generation quantum technologies …

[PDF][PDF] 8 Few-body emulators based on eigenvector continuation

C Drischler, X Zhang - Nuclear Forces for Precision Nuclear Physics–a …, 2022 - arxiv.org
In this contribution we briefly recapitulate the progress made in constructing fast and
accurate emulators for few-body scattering and reaction observables based on eigenvector …

[PDF][PDF] 19 A perspective on the future of high-performance quantum computing

DJ Dean - Nuclear Forces for Precision Nuclear Physics–a …, 2022 - arxiv.org
When contrasting the evolution of quantum computing with the advent of microchip
technology, one sees interesting similarities. Let us start with transistors. In 1925, Julian …

Unconventional Ferroelectricity, Quantum Magnetism, and Multiferroicity of Single-Crystalline Quantum Materials

X Xu - 2022 - search.proquest.com
In the first chapter, single crystal growth techniques, ferroic orders, and magnetoelectricity
are introduced. In the second chapter, the phenomenological theory of ferroelectric transition …