Your everyday world from a physicist's perspective


Space-Time Folding of the Wake Produced by a Supervelocity Rotating Point Source

G. d’Hardemare, S. Wildeman, A. Eddi, and E. Fort (2019), PRL 122, 104301, (pdf, doi)

Dynamics of heavy and buoyant underwater pendulums

V. Mathai, L. Loeffen, T. Chan and S. Wildeman (2019), JFM 862, pp. 348-363, (pdf, doi)

Observation of the Talbot effect with water waves

A. Bakman, S. Fishman, M. Fink, E. Fort, S. Wildeman (2019), AJP 87, 38, (doi)

Real-time quantitative Schlieren imaging by fast Fourier demodulation of a checkered backdrop

S. Wildeman (2018), Exp. Fluids 59, 97, (pdf, doi, source code)

Fast Dynamics of Water Droplets Freezing from the Outside In

S. Wildeman, S. Sterl, C. Sun, and D. Lohse (2017), PRL 118(8), 84101, (pdf, suppl., doi)

Electric field makes Leidenfrost droplets take a leap

S. Wildeman and C. Sun (2016), Soft Matter 12, pp. 9622-9632 (pdf, doi)

Role of natural convection in the dissolution of sessile droplets

E. Dietrich, S. Wildeman, C. Visser, K. Hofhuis, E. S. Kooij, H. J. W. Zandvliet, D. Lohse (2016), JFM 794, pp. 45–67, (pdf, doi)

On the spreading of impacting drops

S. Wildeman, C. Visser, C. Sun, and D. Lohse (2016), JFM 805, pp. 636-655 (pdf, doi)

Tribonucleation of bubbles (writing with bubbles)

S. Wildeman, H. Lhuissier, C. Sun, D. Lohse, and A. Prosperetti. (2014), PNAS 111(28), pp. 10089–94 (pdf, doi)

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