Oscillatory dynamics of a charged microbubble under ultrasound
Thotreithem Hongray, B. Ashok, and J. Balakrishnan

TL;DR
This paper investigates how charge and ultrasound parameters influence the nonlinear oscillations, bifurcations, and temperature dynamics of a microbubble, revealing critical thresholds and bifurcation routes to chaos.
Contribution
It introduces a detailed analysis of charged microbubble oscillations under ultrasound, highlighting the effects of charge, pressure, and frequency on bifurcations and temperature behavior.
Findings
Charge advances bifurcations to chaos.
Existence of a critical frequency depending on charge and pressure.
Identification of a threshold pressure P_{tr} affecting velocity and temperature.
Abstract
Nonlinear oscillations of a bubble carrying a constant charge and suspended in a fluid, undergoing periodic forcing due to incident ultrasound are studied. The system exhibits period-doubling route to chaos and the presence of charge has the effect of advancing these bifurcations. The minimum magnitude of the charge Qmin above which the bubble's radial oscillations can occur above a certain velocity c1 is found to be related by a simple power law to the driving frequency omega of the acoustic wave. We find the existence of a critical frequency omega_H above which uncharged bubbles necessarily have to oscillate at velocities below c1. We further find that this critical frequency crucially depends upon the amplitude Ps of the driving acoustic pressure wave. The temperature of the gas within the bubble is calculated. A critical value P_{tr} of Ps equalling the upper transient threshold…
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Taxonomy
TopicsUltrasound and Cavitation Phenomena · Ultrasound and Hyperthermia Applications · Microfluidic and Bio-sensing Technologies
