A scalable numerical framework simulates laser cooling of large 3D ion crystals in Penning traps, identifying axial mode additions and prolate geometries that achieve sub-1 mK perpendicular temperatures with simplified beam setups.
Title resolution pending
3 Pith papers cite this work. Polarity classification is still indexing.
representative citing papers
Degeneracy in cavity-coupled Pauli crystals induces zero-threshold superradiance accompanied by emergence of a periodically modulated genuine quantum crystal.
The dynamical squeezing phase transition in bilayer XXZ spin models is universal across lattice geometries and interlayer coupling rescalings, with a new sub-linear scaling for short-range interactions.
citing papers explorer
-
Optimizing Doppler laser cooling protocols for quantum sensing with 3D ion crystals in a Penning trap
A scalable numerical framework simulates laser cooling of large 3D ion crystals in Penning traps, identifying axial mode additions and prolate geometries that achieve sub-1 mK perpendicular temperatures with simplified beam setups.
-
Pauli crystal superradiance
Degeneracy in cavity-coupled Pauli crystals induces zero-threshold superradiance accompanied by emergence of a periodically modulated genuine quantum crystal.
-
Universal Spin Squeezing Dynamical Phase Transitions across Lattice Geometries, Dimensions, and Microscopic Couplings
The dynamical squeezing phase transition in bilayer XXZ spin models is universal across lattice geometries and interlayer coupling rescalings, with a new sub-linear scaling for short-range interactions.