Marangoni modulation of coupled Rayleigh-Taylor and Faraday instabilities in vertically oscillated liquid films
Jun Gao, Senlin Zhu, Luca Brandt, Jianjun Tao, Qingfei Fu, Lijun Yang

TL;DR
This paper explores how Marangoni effects influence coupled Rayleigh-Taylor and Faraday instabilities in oscillated liquid films, revealing frequency-dependent stabilization and destabilization mechanisms through analysis and simulations.
Contribution
It introduces a comprehensive analysis of Marangoni modulation on coupled instabilities, including a new surfactant mode and a scaling law for critical mode balance.
Findings
Increasing Marangoni number suppresses subharmonic modes and promotes harmonic regimes.
Surfactants can either stabilize or destabilize the system depending on frequency.
A new surfactant mode emerges at low frequencies, merging with RTI branch.
Abstract
We investigate the Marangoni modulation of coupled Rayleigh-Taylor and Faraday instabilities in a vertically oscillated Newtonian liquid film carrying insoluble surfactants. Linear stability analysis using Floquet theory reveals that an increasing Marangoni number (Ma) selectively suppresses subharmonic modes, driving the system into a harmonic-dominated regime. The interfacial response is found to be highly frequency-dependent. At low forcing frequencies, increasing Ma causes adjacent harmonic tongues to merge into a novel surfactant mode that migrates towards long wavelengths, ultimately coalescing with the RTI branch and fragmenting the dynamically stable window. Conversely, at high frequencies, surfactants monotonically elevate the harmonic instability threshold, significantly widening the stable parameter space. To uncover the underlying mechanisms, a long-wave asymptotic analysis…
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