Abstract

Nonlinear optomechanical coupling is the basis for many potential future experiments in quantum optomechanics (e.g., quantum non-demolition measurements, preparation of non-classical states), which to date have been difficult to realize due to small non-linearity in typical optomechanical devices. Here we introduce an optomechanical system combining strong nonlinear optomechanical coupling, low mass and large optical mode spacing. This nanoscale "paddle nanocavity" supports mechanical resonances with hundreds of fg mass which couple nonlinearly to optical modes with a quadratic optomechanical coupling coefficient $g^{(2)} > 2\pi\times400$ MHz/nm$^2$, and a two phonon to single photon optomechanical coupling rate $\Delta \omega_0 > 2\pi\times 16$ Hz. This coupling relies on strong phonon-photon interactions in a structure whose optical mode spectrum is highly non--degenerate. Nonlinear optomechanical readout of thermally driven motion in these devices should be observable for T $> 50 $ mK, and measurement of phonon shot noise is achievable. This shows that strong nonlinear effects can be realized without relying on coupling between nearly degenerate optical modes, thus avoiding parasitic linear coupling present in two mode systems.

Highlights

  • NRC Publications Archive Archives des publications du CNRCNonlinear optomechanical paddle nanocavities Kaviani, Hamidreza; Healey, Chris; Wu, Marcelo; Ghobadi, Roohollah; Hryciw, Aaron; Barclay, Paul E

  • The development of cavity optomechanical systems with large nonlinear photon–phonon coupling has been motivated by quantum nondemolition (QND) measurement of phonon number [10] and shot noise

  • Recent progress in developing optomechanical systems with large nonlinear optomechanical coupling has been driven by studies of membrane-in-the-middle (MiM) [18,19,20,21] and whispering gallery mode [12,22,23] cavities

Read more

Summary

NRC Publications Archive Archives des publications du CNRC

Nonlinear optomechanical paddle nanocavities Kaviani, Hamidreza; Healey, Chris; Wu, Marcelo; Ghobadi, Roohollah; Hryciw, Aaron; Barclay, Paul E. / La version de cette publication peut être l’une des suivantes : la version prépublication de l’auteur, la version acceptée du manuscrit ou la version de l’éditeur. For the publisher’s version, please access the DOI link below./ Pour consulter la version de l’éditeur, utilisez le lien DOI ci-dessous. NRC Publications Record / Notice d'Archives des publications de CNRC: https://nrc-publications.canada.ca/eng/view/object/?id=78c9ef1d-4443-4bf0-a96f-609cea2c05b0 https://publications-cnrc.canada.ca/fra/voir/objet/?id=78c9ef1d-4443-4bf0-a96f-609cea2c05b0.

Nonlinear optomechanical paddle nanocavities
The resulting contributions g
Full Text
Published version (Free)

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call