| Literature DB >> 28068098 |
Dong Zhu1,2, Xin-He Wang3,4, Wei-Cheng Kong1,2, Guang-Wei Deng1,2, Jiang-Tao Wang3,4, Hai-Ou Li1,2, Gang Cao1,2, Ming Xiao1,2, Kai-Li Jiang3,4, Xing-Can Dai3,4, Guang-Can Guo1,2, Franco Nori5,6, Guo-Ping Guo1,2.
Abstract
Phonon-cavity electromechanics allows the manipulation of mechanical oscillations similar to photon-cavity systems. Many advances on this subject have been achieved in various materials. In addition, the coherent phonon transfer (phonon Rabi oscillations) between the phonon cavity mode and another oscillation mode has attracted many interest in nanoscience. Here, we demonstrate coherent phonon transfer in a carbon nanotube phonon-cavity system with two mechanical modes exhibiting strong dynamical coupling. The gate-tunable phonon oscillation modes are manipulated and detected by extending the red-detuned pump idea of photonic cavity electromechanics. The first- and second-order coherent phonon transfers are observed with Rabi frequencies 591 and 125 kHz, respectively. The frequency quality factor product fQm ∼ 2 × 1012 Hz achieved here is larger than kBTbase/h, which may enable the future realization of Rabi oscillations in the quantum regime.Entities:
Keywords: Phonon cavity; electric tuning; nanotube; phonon rabi oscillations; quantum dot; strong coupling
Year: 2017 PMID: 28068098 DOI: 10.1021/acs.nanolett.6b04223
Source DB: PubMed Journal: Nano Lett ISSN: 1530-6984 Impact factor: 11.189