Measurement of the Resonant Characteristics of a Single Bubble Vibration by Using a Laser Doppler Vibrometer
Taisuke Yoshikawa, Hironori Kotera, Kenji Yoshida, Daisuke Koyama, Kentaro Nakamura, Yoshiaki Watanabe
Abstract
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Taisuke Yoshikawa, Hironori Kotera, Kenji Yoshida, Daisuke Koyama, Kentaro Nakamura, Yoshiaki Watanabe
Abstract
Open-access reader
We constructed the experimental system with a laser Doppler vibrometer (LDV) for measuring the vibration of a single microbubble. It was demonstrated that the system enabled the capture of the vibration with an amplitude of nanometer order. We attempted to experimentally measure the resonant characteristics of a bubble attached to a wall by using the system. As a result, we succeeded in measuring the characteristics and evaluating the Q factor and the resonant radius at a driving frequency of 27.8 kHz, although these values are different from those predicted on the basis of the theory for a single free bubble. The LDV measurement system is expected to an effective tool for evaluating bubble vibrations with very small displacement amplitudes, such as the vibration of a microcapsule.
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We constructed the experimental system with a laser Doppler vibrometer (LDV) for measuring the vibration of a single microbubble. It was demonstrated that the system enabled the capture of the vibration with an amplitude of nanometer order. We attempted to experimentally measure the resonant characteristics of a bubble attached to a wall by using the system. As a result, we succeeded in measuring the characteristics and evaluating the Q factor and the resonant radius at a driving frequency of 27.8 kHz, although these values are different from those predicted on the basis of the theory for a single free bubble. The LDV measurement system is expected to an effective tool for evaluating bubble vibrations with very small displacement amplitudes, such as the vibration of a microcapsule.
Key concepts: Laser Doppler vibrometer, Laser scanning vibrometry, Bubble, Vibration, Acoustics, Laser Doppler velocimetry, Optics, Amplitude