activity
20152026
most citedCorrecting symmetry imperfections in linear multipole traps

7 citations · 7 across the 3 of their papers we have counts for

collaborators

8 papers

physics.atom-ph2026

Shortcut to Adiabatic Transfer in a Four-Level N-type System using Counterdiabatic Driving

Marius Romuald Kamsap, Simon Evehe Ndong, Maïk Delon Mboumba +5

The stimulated Raman shortcut-to-adiabatic passage (STIRSAP) technique has been demonstrated to accelerate adiabatic population transfer processes. Traditionally applied to three-l…

physics.ins-det2026

A linear Paul trap to study the equilibrium of charged micron-sized particles in air

Roxen Wilby Kissangou, Marius Romuald Kamsap, Mike Delon Mboumba +2

We describe and use a macroscopic linear quadrupolar trap to explore the trapping and equilibrium properties of charged particles. These devices, when operated to trap atomic ions,…

quant-ph2026

Longitudinal-Field-Driven Transition in a non-integrable Non-Hermitian Transverse-Field Ising Chain via RBMs

M. E. Ateuafack, M. R. Kamsap, J. T. Diffo +2

We investigate the ground-state properties and quantum critical behavior of a non-Hermitian transverse-field Ising chain subjected to longitudinal and complex transverse magnetic f…

physics.ins-det2018★ 7 cited

Correcting symmetry imperfections in linear multipole traps

J. Pedregosa-Gutierrez, C. Champenois, M. Houssin +2

Multipole radio-frequency traps are central to collisional experiments in cryogenic environments. They also offer possibilities to generate new type of ion crystals topologies and…

physics.atom-ph2017

Symmetry breaking in linear multipole traps

Jofre Pedregosa-Gutierrez, Caroline Champenois, Marius Kamsap +3

Radiofrequency multipole traps have been used for some decades in cold collision experiments, and are gaining interest for precision spectroscopy due to their low mi-cromotion cont…

quant-ph2016

Experimental demonstration of an efficient number diagnostic for long 1D ion chains

Marius Romuald Kamsap, Caroline Champenois, J. Pedregosa-Gutierrez +2

Very long, one-dimensional (1D) ion chains are the basis for many applications, in particular in quantum information processing and reliable diagnostics are needed to quantify them…