most citedTunable on-chip optical traps for levitating particles based on single-layer metasurface

1 citations · 1 across the 1 of their papers we have counts for

collaborators

5 papers

quant-ph2024

Coherent expansion of the motional state of a massive nanoparticle beyond its linear dimensions

R. Muffato, T. S. Georgescu, M. Carlesso +2

Quantum mechanics predicts that massive particles exhibit wave-like behavior. Matterwave interferometry has been able to validate such predictions through ground-breaking experimen…

quant-ph2024

Squeezing below the ground state of motion of a continuously monitored levitating nanoparticle

Qiongyuan Wu, Diana A. Chisholm, Rafael Muffato +5

Squeezing is a crucial resource for quantum information processing and quantum sensing. In levitated nanomechanics, squeezed states of motion can be generated via temporal control…

physics.optics20241 cited

Tunable on-chip optical traps for levitating particles based on single-layer metasurface

Chuang Sun, Hailong Pi, Kian Shen Kiang +4

Optically levitated multiple nanoparticles has emerged as a platform for studying complex fundamental physics such as non-equilibrium phenomena, quantum entanglement, and light-mat…

quant-ph2024

Generation of classical non-Gaussian distributions by squeezing a thermal state into non-linear motion of levitated optomechanics

Rafael Muffato, Tiberius Georgescu, Jack Homans +6

We report on an experiment achieving the dynamical generation of non-Gaussian states of motion of a levitated optomechanical system. We access intrinsic Duffing-like nonlinearities…

quant-ph2023

Nanoparticle Interferometer by Throw and Catch

Jakub Wardak, Tiberius Georgescu, Giulio Gasbarri +2

Matter-wave interferometry with increasingly larger masses could pave the way to understanding the nature of wavefunction collapse, the quantum to classical transition or even how…