Djorwe P, Pennec Y, Djafari-Rouhani B
Institut d'Electronique, de Microélectronique et Nanotechnologie, UMR CNRS 8520 Université de Lille, Sciences et technologies, Villeneuve d' Ascq, 59652, France.
Sci Rep. 2019 Feb 8;9(1):1684. doi: 10.1038/s41598-019-38578-8.
We demonstrate low-power amplification process in cavity optomechanics (COM). This operation is based on the nonlinear position-modulated self-Kerr interaction. Owing to this nonlinear term, the effective coupling highly scales with the photon number, resulting in a giant enhancement of the cooperativity. Even for small nonlinearity, the system reaches the amplification threshold for weak driving strength, leading to low-power phonon lasing. This amplifier can be phase-preserving and provides a practical advantage related to the power consumption issues. This work opens up new avenues to perform low-power and efficient amplifiers in optomechanics and related fields.
我们展示了腔光力学(COM)中的低功率放大过程。此操作基于非线性位置调制的自克尔相互作用。由于这个非线性项,有效耦合与光子数高度相关,从而导致协同性大幅增强。即使对于小的非线性,系统在弱驱动强度下也能达到放大阈值,进而实现低功率声子激光发射。这种放大器可以保持相位,并且在功耗问题方面具有实际优势。这项工作为在光力学及相关领域实现低功率高效放大器开辟了新途径。