Liquid nanofilms exposed to a large transverse thermal gradient undergo an instability featuring an array of nanopillars whose typical pitch is tens of microns. In earlier works, a comparison of this pitch with the fastest growing wavelength predicted by three different models based on linear instability showed closest agreement with a long wavelength thermocapillary mechanism in which gravity plays no role. Here, we present improved feature extraction techniques, which allow identification of the fastest growing wavelength at much earlier times than previously reported, and more realistic simulations for assessing thermal gradients, which better approximate the actual experimental system. While these improvements lead to better agreement w...
Recent investigations of microfluidic flows have focused on manipulating the motion of very thin liq...
The classical notion of the coalescence of two droplets of the same radius R is that surface tension...
The effects of thermal fluctuations on nanoscale flows are captured by a numerical scheme that is un...
Liquid nanofilms exposed to a large transverse thermal gradient undergo an instability featuring an ...
Slender liquid nanofilms exposed to large surface thermal gradients are known to undergo thickness f...
Slender liquid nanofilms exposed to large surface thermal gradients are known to undergo thickness f...
This doctoral thesis describes experimental work conducted as part of ongoing efforts to identify an...
Molten polymer nanofilms subject to a large transverse thermal gradient can undergo a thermocapillar...
The free surface of molten nanofilms is known to undergo spontaneous formation of periodic protrusio...
The instability of a thin liquid film on a solid surface is studied both by molecular dynamics simul...
The Rayleigh-Taylor (RT) interfacial instability has been attributed to physical phenomenon in a wid...
The combined effects of thermal fluctuations and liquid-solid slip on nanoscale thin-film flows are ...
The dynamics of thin film liquid interfaces (< 100 nm) play dominant roles in many macroscale phenom...
Linearized modal stability theory has shown that the thermocapillary spreading of a liquid film on a...
Thermal fluctuations have been shown to influence the thinning dynamics of planar thin liquid films,...
Recent investigations of microfluidic flows have focused on manipulating the motion of very thin liq...
The classical notion of the coalescence of two droplets of the same radius R is that surface tension...
The effects of thermal fluctuations on nanoscale flows are captured by a numerical scheme that is un...
Liquid nanofilms exposed to a large transverse thermal gradient undergo an instability featuring an ...
Slender liquid nanofilms exposed to large surface thermal gradients are known to undergo thickness f...
Slender liquid nanofilms exposed to large surface thermal gradients are known to undergo thickness f...
This doctoral thesis describes experimental work conducted as part of ongoing efforts to identify an...
Molten polymer nanofilms subject to a large transverse thermal gradient can undergo a thermocapillar...
The free surface of molten nanofilms is known to undergo spontaneous formation of periodic protrusio...
The instability of a thin liquid film on a solid surface is studied both by molecular dynamics simul...
The Rayleigh-Taylor (RT) interfacial instability has been attributed to physical phenomenon in a wid...
The combined effects of thermal fluctuations and liquid-solid slip on nanoscale thin-film flows are ...
The dynamics of thin film liquid interfaces (< 100 nm) play dominant roles in many macroscale phenom...
Linearized modal stability theory has shown that the thermocapillary spreading of a liquid film on a...
Thermal fluctuations have been shown to influence the thinning dynamics of planar thin liquid films,...
Recent investigations of microfluidic flows have focused on manipulating the motion of very thin liq...
The classical notion of the coalescence of two droplets of the same radius R is that surface tension...
The effects of thermal fluctuations on nanoscale flows are captured by a numerical scheme that is un...