Simultaneous ground-state cooling of six mechanical modes of two levitated nanoparticles

Fuente: arXiv
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Main Authors: Zhang, Qian, Xu, Yi, Liao, Jie-Qiao
Format: Preprint
Published: 2026
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author Zhang, Qian
Xu, Yi
Liao, Jie-Qiao
author_facet Zhang, Qian
Xu, Yi
Liao, Jie-Qiao
contents Ground-state cooling is a prerequisite for exploring macroscopic quantum effects in mechanical motion of massive objects. Here we construct a polarization-angle-controllable coupled cavity-levitated-nanoparticle system in which two nanoparticles trapped by individual tweezers are coupled to a single-mode field in a cavity. We also study the simultaneous ground-state cooling of six mechanical displacement modes of the two levitated nanoparticles through the coherent scattering mechanism. By deriving the Hamiltonian of the system and performing the linearization, we obtain a linearized seven-mode Hamiltonian, which can exhibit the coupling structure and cooling mechanism. We confirm the physical condition for the appearance of dark modes, which will suppress the simultaneous ground-state cooling of these mechanical modes. We also find that, by properly tuning the polarization angle $θ$ between the cavity field and the optical tweezer fields, the coupling channels can be controlled on demand and simultaneous ground-state cooling of these six motional modes of the two nanoparticles can be realized. Our work paves the way for generation and manipulation of collective macroscopic quantum effects in multiple levitated nanoparticles.
format Preprint
id arxiv_https___arxiv_org_abs_2604_07971
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Simultaneous ground-state cooling of six mechanical modes of two levitated nanoparticles
Zhang, Qian
Xu, Yi
Liao, Jie-Qiao
Quantum Physics
Ground-state cooling is a prerequisite for exploring macroscopic quantum effects in mechanical motion of massive objects. Here we construct a polarization-angle-controllable coupled cavity-levitated-nanoparticle system in which two nanoparticles trapped by individual tweezers are coupled to a single-mode field in a cavity. We also study the simultaneous ground-state cooling of six mechanical displacement modes of the two levitated nanoparticles through the coherent scattering mechanism. By deriving the Hamiltonian of the system and performing the linearization, we obtain a linearized seven-mode Hamiltonian, which can exhibit the coupling structure and cooling mechanism. We confirm the physical condition for the appearance of dark modes, which will suppress the simultaneous ground-state cooling of these mechanical modes. We also find that, by properly tuning the polarization angle $θ$ between the cavity field and the optical tweezer fields, the coupling channels can be controlled on demand and simultaneous ground-state cooling of these six motional modes of the two nanoparticles can be realized. Our work paves the way for generation and manipulation of collective macroscopic quantum effects in multiple levitated nanoparticles.
title Simultaneous ground-state cooling of six mechanical modes of two levitated nanoparticles
topic Quantum Physics
url https://arxiv.org/abs/2604.07971