Embodied Intelligence in Nonlinear Elastic Systems
INVITED · MAR-L54 · ID: 2764300
Presentations
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Embodied Intelligence via Instabilities
ORAL · Invited
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Presenters
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Katia Bertoldi
- Harvard University
Authors
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Katia Bertoldi
- Harvard University
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Dynamics and learning in complex networks of nanomechanical oscillators
ORAL · Invited
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Publication: 1. M. H. Matheny, et al., "Phase Synchronization of Two Anharmonic Nanomechanical Oscillators," Phys. Rev. Lett., vol. 112, no. 1, p. 014101, Jan. 2014
2. W. Fon et al., "Complex Dynamical Networks Constructed with Fully Controllable Nonlinear Nanomechanical Oscillators," Nano Lett., vol. 17, no. 10, pp. 5977–5983, Oct. 2017
3. M. H. Matheny et al., "Exotic states in a simple network of nanoelectromechanical oscillators," Science, vol. 363, no. 6431, p. 7932, Mar. 2019
Presenters
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Michael L Roukes
- Caltech
Authors
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Michael L Roukes
- Caltech
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Scott Habermehl
- Caltech
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James P Crutchfield
- University of California, Davis
- UC Davis
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Isaiah Curtis
- Stanford University
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Luis Guillermo Villanueva
- EPFL
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Damien Maillard
- UCSB
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Colloidal mechanisms, mechanical metamaterials, and machines
ORAL · Invited
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Publication: Colloidal mechanisms, mechanical metamaterials, and machines; Melio, Henkes, van Hecke, Kraft (to be submitted)
Presenters
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Daniela Jutta Kraft
- Leiden University
Authors
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Julio Melio
- Leiden University
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Silke Henkes
- Leiden University
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Martin v Van Hecke
- AMOLF
- Leiden University
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Daniela Jutta Kraft
- Leiden University
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Embodying mechanical intelligence from geometrical frustration
ORAL · Invited
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Publication: [1] H. Yasuda, P.R. Buskohl, A. Gillman, T.D. Murphey, S. Stepney, R.A. Vaia, J.R. Raney, Mechanical computing, Nature 598 (2021) 39–48. https://doi.org/10.1038/s41586-021-03623-y.
[2] J.A. Faber, J.P. Udani, K.S. Riley, A.R. Studart, A.F. Arrieta, Dome-Patterned Metamaterial Sheets, Adv. Sci. 7 (2020) 2001955. https://doi.org/10.1002/advs.202001955.
[3] J.P. Udani, A.F. Arrieta, Taming geometric frustration by leveraging structural elasticity, Mater. Des. 221 (2022) 110809. https://doi.org/10.1016/j.matdes.2022.110809.
[4] R. Moessner, A.P. Ramirez, Geometrical frustration, Phys. Today 59 (2006) 24–29. https://doi.org/10.1063/1.2186278.
[5] F. Barahona, On the computational complexity of ising spin glass models, J. Phys. A. Math. Gen. 15 (1982) 3241–3253. https://doi.org/10.1088/0305-4470/15/10/028.
[6] J.C. Osorio, J.S. Rincon, H. Morgan, A.F. Arrieta, Embodying Control in Soft Multistable Grippers from morphofunctional co-design, ArXiv (2024). https://doi.org/10.48550/arXiv.2407.08111.Presenters
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Andres F Arrieta
- Purdue University
Authors
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Andres F Arrieta
- Purdue University
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Metamaterials that Mechanically Compute via Nonlinear Deformations
ORAL · Invited
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Publication: Panas, R.M., Sun, F., Farzaneh, A., Cortes, J.G., Bekker, L., Johnson, H., Mancini, J., Pascall, A., Hopkins, J.B., 2023, "Signal Propagation through Resettable Mechanical Logic," Research Square, DOI: https://doi.org/10.21203/rs.3.rs-2440784/v1
Presenters
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Jonathan B Hopkins
- University of California, Los Angeles
Authors
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Jonathan B Hopkins
- University of California, Los Angeles
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