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Long-range optical trapping and binding of microparticles in hollow-core photonic crystal fibre.


ABSTRACT: Optically levitated micro- and nanoparticles offer an ideal playground for investigating photon-phonon interactions over macroscopic distances. Here we report the observation of long-range optical binding of multiple levitated microparticles, mediated by intermodal scattering and interference inside the evacuated core of a hollow-core photonic crystal fibre (HC-PCF). Three polystyrene particles with a diameter of 1?µm are stably bound together with an inter-particle distance of ~40??m, or 50 times longer than the wavelength of the trapping laser. The levitated bound-particle array can be translated to-and-fro over centimetre distances along the fibre. When evacuated to a gas pressure of 6?mbar, the collective mechanical modes of the bound-particle array are able to be observed. The measured inter-particle distance at equilibrium and mechanical eigenfrequencies are supported by a novel analytical formalism modelling the dynamics of the binding process. The HC-PCF system offers a unique platform for investigating the rich optomechanical dynamics of arrays of levitated particles in a well-isolated and protected environment.

SUBMITTER: Bykov DS 

PROVIDER: S-EPMC6107024 | biostudies-literature | 2018

REPOSITORIES: biostudies-literature

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Long-range optical trapping and binding of microparticles in hollow-core photonic crystal fibre.

Bykov Dmitry S DS   Xie Shangran S   Zeltner Richard R   Machnev Andrey A   Wong Gordon K L GKL   Euser Tijmen G TG   Russell Philip St J PSJ  

Light, science & applications 20180620


Optically levitated micro- and nanoparticles offer an ideal playground for investigating photon-phonon interactions over macroscopic distances. Here we report the observation of long-range optical binding of multiple levitated microparticles, mediated by intermodal scattering and interference inside the evacuated core of a hollow-core photonic crystal fibre (HC-PCF). Three polystyrene particles with a diameter of 1 µm are stably bound together with an inter-particle distance of ~40 μm, or 50 tim  ...[more]

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