2022/05/22 by Hideki Arahari, Arahari, Hideki, Konishi, Sota +3
Engineering · Physics and Astronomy · #Advanced MEMS and NEMS Technologies #Computational Physics (physics.comp-ph) #FOS: Physical sciences #Mechanical and Optical Resonators #Optics (physics.optics) #Photonic and Optical Devices
paper · pdf · doi:10.48550/arxiv.2205.10856
openalex publication_date 2022/05/22 · openalex created_date 2022/05/26 · openalex updated_date 2026/07/28
We propose an optomechanical system utilizing luminescence-induced optical forces (LIOFs). Anisotropic dielectric structures enhance the recoil force from the luminescence. The optomechanical resonator consists of a composite film with a dielectric membrane, luminescent nanofilm, and a metallic substrate. The LIOF causes a mechanical frequency shift in the oscillator known as the optical spring effect. These results link the quantum properties of luminescent nanomaterials with those of other quantum-mechanical systems with vastly different frequency regimes via induced vibrational modes.