Philippe Marmottant performs multidisciplinary studies into Optics and Quantum mechanics in his work. Quantum mechanics is closely attributed to Amplitude in his study. His research on Amplitude frequently connects to adjacent areas such as Optics. His Mechanics study frequently intersects with other fields, such as Bubble. Philippe Marmottant regularly ties together related areas like Mechanics in his Bubble studies. Philippe Marmottant frequently studies issues relating to Sound (geography) and Acoustics. His Sound (geography) study typically links adjacent topics like Acoustics. Philippe Marmottant performs integrative Computer graphics (images) and Visualization research in his work. His Visualization research extends to Artificial intelligence, which is thematically connected.
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Controlled vesicle deformation and lysis by single oscillating bubbles
Philippe Marmottant;Sascha Hilgenfeldt.
Nature (2003)
On spray formation
Philippe Marmottant;Emmanuel Villermaux.
Journal of Fluid Mechanics (2004)
A model for large amplitude oscillations of coated bubbles accounting for buckling and rupture
Philippe Marmottant;Philippe Marmottant;Sander van der Meer;Marcia Emmer;Michel Versluis.
Journal of the Acoustical Society of America (2005)
Role of the channel geometry on the bubble pinch-off in flow-focusing devices.
Benjamin Dollet;Wim van Hoeve;Jan-Paul Raven;Philippe Marmottant.
Physical Review Letters (2008)
The role of fluctuations and stress on the effective viscosity of cell aggregates.
Philippe Marmottant;Abbas Mgharbel;Jos Käfer;Benjamin Audren.
Proceedings of the National Academy of Sciences of the United States of America (2009)
A bubble-driven microfluidic transport element for bioengineering
Philippe Marmottant;Sascha Hilgenfeldt.
Proceedings of the National Academy of Sciences of the United States of America (2004)
Visual quantification of embolism reveals leaf vulnerability to hydraulic failure
Timothy J. Brodribb;Robert P. Skelton;Scott A. M. McAdam;Diane Bienaimé.
New Phytologist (2016)
Ligament-mediated spray formation.
Emmanuel Villermaux;Philippe Marmottant;J. Duplat.
Physical Review Letters (2004)
Revealing catastrophic failure of leaf networks under stress
Timothy J. Brodribb;Diane Bienaimé;Philippe Marmottant.
Proceedings of the National Academy of Sciences of the United States of America (2016)
Ultra-fast underwater suction traps
Olivier Vincent;Carmen Weißkopf;Simon Poppinga;Tom Masselter.
Proceedings of The Royal Society B: Biological Sciences (2011)
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