论文标题
提出的基于发光诱导的光学力的光学机械系统
Proposed optomechanical systems based on luminescence-induced optical forces
论文作者
论文摘要
我们提出了一种利用发光诱导的光学作用(LIOF)的光学机械系统。各向异性介电结构增强了发光的后坐力。光力学谐振器由具有介电膜,发光纳米膜和金属底物的复合膜组成。 LIOF导致振荡器的机械频移称为光弹簧效应。这些结果将发光纳米材料的量子特性与通过诱导的振动模式具有巨大不同频率状态的其他量子力学系统的量子性质联系在一起。
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.