Profil

Tadrist Loïc

See author's contact details
Main Referenced Co-authors
Gilet, Tristan  (9)
Schlagheck, Peter  (5)
Iazzolino, Antonio  (2)
Sampara, Naresh (2)
Shim, Jeong -Bo  (2)
Main Referenced Keywords
Capillary force (3); Capillary grippers (2); Grippers (2); Heating source (2); Joule effects (2);
Main Referenced Unit & Research Centers
A&M - Aérospatiale et Mécanique - ULiège [BE] (1)
Main Referenced Disciplines
Physics (7)
Mechanical engineering (4)
Aerospace & aeronautics engineering (1)
Engineering, computing & technology: Multidisciplinary, general & others (1)

Publications (total 11)

The most downloaded
71 downloads
Iazzolino, A., Tourtit, Y., Chafai, A., Gilet, T., Lambert, P., & Tadrist, L. (2019). Pick and release of micro-objects: An actuation-free method to change the conformity of a capillary contact. Proceedings of MARSS 2019: 4th International Conference on Manipulation, Automation, and Robotics at Small Scales. doi:10.1109/MARSS.2019.8860972 https://hdl.handle.net/2268/253927

The most cited

26 citations (Scopus®)

Tadrist, L., Shim, J.-B., Gilet, T., & Schlagheck, P. (2018). Faraday instability and subthreshold Faraday waves: surface waves emitted by walkers. Journal of Fluid Mechanics, 848, 906. doi:10.1017/jfm.2018.358 https://hdl.handle.net/2268/225684

Leblanc, O., Tadrist, L., Moreau, N., Brun, B., Gilet, T., & Hackens, B. (2021). An Affordable Pedagogical Setup for Wave-particule Duality and Applications to Chaotic Stadium Cavity. In Telsiks 2021 - Proceedings. IEEE. doi:10.1109/TELSIKS52058.2021.9606385
Peer reviewed

Tadrist, L., Sampara, N., Ashraf, I., & Andrianne, T. (25 February 2020). When can you expect contrast swing in a cricket game, and how to obtain it? Sports Engineering, 23. doi:10.1007/s12283-020-0319-0
Peer Reviewed verified by ORBi

Iazzolino, A., Tourtit, Y., Chafaï, A., Gilet, T., Lambert, P., & Tadrist, L. (2020). Pick up and release of micro-objects: A motion-free method to change the conformity of a capillary contact. Soft Matter, 16 (3), 754-763. doi:10.1039/c9sm02093d
Peer Reviewed verified by ORBi

Tadrist, L., Gilet, T., Schlagheck, P., & Bush, J. W. M. (2020). Predictability in a hydrodynamic pilot-wave system: Resolution of walker tunneling. Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics, 102, 013104. doi:10.1103/PhysRevE.102.013104
Peer Reviewed verified by ORBi

Tadrist, L., Motte, L., Rahli, O., & Tadrist, L. (2019). Characterization of interface properties of fluids by evaporation of a capillary bridge. Royal Society Open Science, 6 (12), 191608. doi:10.1098/rsos.191608
Peer Reviewed verified by ORBi

Iazzolino, A., Tourtit, Y., Chafai, A., Gilet, T., Lambert, P., & Tadrist, L. (2019). Pick and release of micro-objects: An actuation-free method to change the conformity of a capillary contact. Proceedings of MARSS 2019: 4th International Conference on Manipulation, Automation, and Robotics at Small Scales. doi:10.1109/MARSS.2019.8860972
Peer reviewed

Tadrist, L., Sampara, N., Schlagheck, P., & Gilet, T. (2018). Interaction of two walkers: Perturbed vertical dynamics as a source of chaos. Chaos, 28, 096113. doi:10.1063/1.5031888
Peer Reviewed verified by ORBi

Tadrist, L., Shim, J.-B., Gilet, T., & Schlagheck, P. (2018). Faraday instability and subthreshold Faraday waves: surface waves emitted by walkers. Journal of Fluid Mechanics, 848, 906. doi:10.1017/jfm.2018.358
Peer Reviewed verified by ORBi

Tadrist, L., Shim, J.-B., Gilet, T., & Schlagheck, P. (2017). Time evolution of surface waves created by a walker on a vibrated bath [Paper presentation]. American Physical Society - Division of Fluid Dynamics - Annual meeting.

Tadrist, L., Gilet, T., & Schlagheck, P. (2017). Bouncing dynamics leads to the chaotic interaction of two walkers [Paper presentation]. Quandrops17: workshop on wave-particle duality and hydrodynamic quantum analogues.

Tadrist, L., Sampara, N., & Gilet, T. (2016). Interaction of two walkers: locally generated chaos [Paper presentation]. American Physical Society - Division of Fluid Dynamics - Annual meeting.

Contact ORBi