English

Superconducting microsphere magnetically levitated in an anharmonic potential with integrated magnetic readout

Quantum Physics 2023-06-05 v3 Applied Physics

Abstract

Magnetically levitated superconducting microparticles offer a promising path to quantum experiments with picogram to microgram objects. In this work, we levitate a 700ng 1017\sim 10^{17}amu superconducting microsphere in a magnetic chip trap in which detection is integrated. We measure the particle's center-of-mass motion using a DC-SQUID magnetometer. The trap frequencies are continuously tunable between 30 and 160 Hz and the particle remains stably trapped over days in a dilution refrigerator environment. We characterize motional-amplitude-dependent frequency shifts, which arise from trap anharmonicities, namely Duffing nonlinearities and mode couplings. We explain this nonlinear behavior using finite element modelling of the chip-based trap potential. This work constitutes a first step towards quantum experiments and ultrasensitive inertial sensors with magnetically levitated superconducting microparticles.

Keywords

Cite

@article{arxiv.2210.13451,
  title  = {Superconducting microsphere magnetically levitated in an anharmonic potential with integrated magnetic readout},
  author = {Martí Gutierrez Latorre and Gerard Higgins and Achintya Paradkar and Thilo Bauch and Witlef Wieczorek},
  journal= {arXiv preprint arXiv:2210.13451},
  year   = {2023}
}

Comments

version close to published version; 16 pages, 13 figures

R2 v1 2026-06-28T04:23:19.552Z