Nuclear quadrupole interaction and zero first-order Zeeman transitions of
Er
167
3
+
in
CaWO
4
Physical Review B American Physical Society (APS) 113:5 (2026) 054417
Evidence of rotational and tilting disorder of ReO
6
octahedra in single crystals of a 5d
1
double perovskite Ba
2
CaReO
6
Journal of Magnetism and Magnetic Materials Elsevier BV 632 (2025) 173516
Virtual gates enabled by digital surrogate of quantum dot devices
(2025)
Cavity-magnon-polariton spectroscopy of strongly hybridized electro-nuclear spin excitations in LiHoF 4
Scientific Reports Nature Research 14:1 (2024) 25227
Abstract:
We first present a formalism that incorporates the input-output formalism and the linear response theory to employ cavity-magnon-polariton coupling as a spectroscopic tool for investigating strongly hybridized electro-nuclear spin excitations. A microscopic relation between the generalized susceptibility and the scattering parameter |S11| in strongly hybridized cavity-magnon-polariton systems has been derived without resorting to semi-classical approximations. The formalism is then applied to both analyze and simulate a specific systems comprising a model quantum Ising magnet (LiHoF4) and a high-finesse 3D re-entrant cavity resonator. Quantitative information on the electro-nuclear spin states in LiHoF4 is extracted, and the experimental observations across a broad parameter range were numerically reproduced, including an external magnetic field traversing a quantum critical point. The method potentially opens a new avenue not only for further studies on the quantum phase transition in LiHoF4 but also for a wide range of complex magnetic systems.Cavity-Magnon-Polariton spectroscopy of strongly hybridized electro-nuclear spin excitations in LiHoF4
ArXiv 2309.05051 (2023)