Gaining control on optical force by the stimulated-emission resonance effect

Other authors

Universitat Ramon Llull. IQS

Publication date

2023-10



Abstract

The resonance between an electronic transition of a micro/nanoscale object and an incident photon flux can modify the radiation force exerted on that object, especially at an interface. It has been theoretically proposed that a non-linear stimulated emission process can also induce an optical force, however its direction will be opposite to conventional photon scattering/absorption processes. In this work, we experimentally and theoretically demonstrate that a stimulated emission process can induce a repulsive pulling optical force on a single trapped dye-doped particle. Moreover, we successfully integrate both attractive pushing (excited state absorption) and repulsive pulling (stimulated emission) resonance forces to control the overall exerted optical force on an object, validating the proposed non-linear optical resonance theory. Indeed, the results presented here will enable the optical manipulation of the exerted optical force with exquisite control and ultimately enable single particle manipulation.

Document Type

Article

Document version

Published version

Language

English

Pages

p.9

Publisher

American Chemical Society

Published in

Chemical Space 2023, 14(37), 10087

Grant Agreement Number

info:eu-repo/grantAgreement/MCI/RYC/RYC2021-032773-I

Recommended citation

This citation was generated automatically.

Rights

© L'autor/a

© L'autor/a

Attribution-NonCommercial 4.0 International

This item appears in the following Collection(s)

IQS [794]