International audienceWe present the results of a theoretical investigation of the dynamics of a droplet walking on a vibrating fluid bath under the influence of a harmonic potential. The walking droplet's horizontal motion is described by an integro-differential trajectory equation, which is found to admit steady orbital solutions. Predictions for the dependence of the orbital radius and frequency on the strength of the radial harmonic force field agree favorably with experimental data. The orbital quantization is rationalized through an analysis of the orbital solutions. The predicted dependence of the orbital stability on system parameters is compared with experimental data and the limitations of the model are discussed
In the past decade, it has been demonstrated that droplets walking along the surface of a rotating, ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mathematics, May, 2020Cataloged...
Thesis: S.B., Massachusetts Institute of Technology, Department of Mechanical Engineering, September...
We present the results of a theoretical investigation of the dynamics of a droplet walking on a vibr...
International audienceWe present the results of a theoretical investigation of the dynamics of a dro...
We explore the effects of an imposed potential with both oscillatory and quadratic components on the...
We present the results of a numerical investigation of the emergence of chaos in the orbital dynamic...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mathematics, 2018.Cataloged fro...
We present the results of a numerical investigation of droplets walking on a rotating vibrating flui...
Yves Couder, Emmanuel Fort, and coworkers recently discovered that a millimetric droplet sustained o...
It was recently discovered that millimeter-sized droplets bouncing on the surface of an oscillating ...
International audienceA bouncing droplet on a vibrated bath can couple to the waves it generates, so...
A droplet bouncing on the surface of a vibrating liquid bath can move horizontally guided by the wav...
A millimetric liquid droplet may walk across the surface of a vibrating liquid bath through a resona...
In the past decade, it has been demonstrated that droplets walking along the surface of a rotating, ...
In the past decade, it has been demonstrated that droplets walking along the surface of a rotating, ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mathematics, May, 2020Cataloged...
Thesis: S.B., Massachusetts Institute of Technology, Department of Mechanical Engineering, September...
We present the results of a theoretical investigation of the dynamics of a droplet walking on a vibr...
International audienceWe present the results of a theoretical investigation of the dynamics of a dro...
We explore the effects of an imposed potential with both oscillatory and quadratic components on the...
We present the results of a numerical investigation of the emergence of chaos in the orbital dynamic...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mathematics, 2018.Cataloged fro...
We present the results of a numerical investigation of droplets walking on a rotating vibrating flui...
Yves Couder, Emmanuel Fort, and coworkers recently discovered that a millimetric droplet sustained o...
It was recently discovered that millimeter-sized droplets bouncing on the surface of an oscillating ...
International audienceA bouncing droplet on a vibrated bath can couple to the waves it generates, so...
A droplet bouncing on the surface of a vibrating liquid bath can move horizontally guided by the wav...
A millimetric liquid droplet may walk across the surface of a vibrating liquid bath through a resona...
In the past decade, it has been demonstrated that droplets walking along the surface of a rotating, ...
In the past decade, it has been demonstrated that droplets walking along the surface of a rotating, ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mathematics, May, 2020Cataloged...
Thesis: S.B., Massachusetts Institute of Technology, Department of Mechanical Engineering, September...