4.8 Article

Optical Control of Mechanical Mode-Coupling within a MoS2 Resonator in the Strong-Coupling Regime

期刊

NANO LETTERS
卷 15, 期 10, 页码 6727-6731

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.nanolett.5b02586

关键词

Nanomechanics; optomechanics; transition metal dichalcogenide; 2D materials; strong coupling; NEMS

资金

  1. Materials Research Science and Engineering Center (MRSEC) of Northwestern University (National Science Foundation) [DMR-1121262]

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Two-dimensional (2-D) materials including graphene and transition metal dichalcogenides (TMDs) are an exciting platform for ultrasensitive force and displacement detection in which the strong light matter coupling is exploited in the optical control of nanomechanical motion. Here we report the optical excitation and displacement detection of a similar to 3 nm thick MoS2 resonator in the strong-coupling regime, which has not previously been achieved in 2-D materials. Mechanical mode frequencies can be tuned by more than 12% by optical heating, and they exhibit avoided crossings indicative of strong intermode coupling. When the membrane is optically excited at the frequency difference between vibrational modes, normal mode splitting is observed, and the intermode energy exchange rate exceeds the mode decay rate by a factor of 15. Finite element and analytical modeling quantifies the extent of mode softening necessary to control intermode energy exchange in the strong coupling regime.

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