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Updated: Sep 8, 2025

Implementation of a Reference Interferometer for Nanodetection
Published on: April 26, 2014
Low-Frequency Oscillations in Optical Measurements of Metal-Nanoparticle Vibrations
Aftab Ahmed1, Rachel Gelfand2, S David Storm2
1Department of Electrical Engineering, California State University, Long Beach, California 90840, United States.
Abstract:
Time-resolved optical measurements of vibrating metal nanoparticles have been used extensively to probe the ultrafast mechanical properties of the nanoparticles and of the surrounding liquid, but nearly all investigations so far have been limited to the linear regime. Here, we report the observation of a low-frequency oscillating signal in transient-absorption measurements of nanoparticles with octahedral gold cores and cubic silver shells; the signal appears at the difference of two mechanical vibrational frequencies in the particles, suggesting a nonlinear mixing process. We tentatively attribute this proposed mixing to a nonlinear coupling between a vibrational mode of the nanoparticle and its optical-frequency plasmon resonance. The optimization of this nonlinear transduction may enable high-efficiency opto-mechanical frequency mixing in the GHz-THz frequency regime.
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