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Papers
 
Google Scholar: https://scholar.google.co.jp/citations?user=ArnAQPwAAAAJ&hl=ja
ORCID: https://orcid.org/0000-0003-0765-8641
Researchmap: https://researchmap.jp/tomohiko-sano
 

P. Johanns, P. Grangeorge, C. Baek, T. G. Sano, J. H. Maddocks, and P. M. Reis, "The shapes of physical trefoil knots" Submitted (2020).

P. Grangeorge, C. Baek, H Singh, P. Johanns, T. G. Sano, J. H. Maddocks, and P. M. Reis, "Mechanics of two filaments in tight contact: The orthogonal clasp" Submitted (2020).

C. Baek, P. Johanns, T. G. Sano, P. Grangeorge, and P. M. Reis, "Finite Element Modeling of Tight Elastic Knots" Journal of Applied Mechanics 88(2): 024501 (2020).

T. G. Sano*, S. Tsugawa*, H. Shima, M. T. Morita, and T. Demura, “A data-validated mathematical model details the contributions of bending and stretching forces to gravitropic shoot bending in Arabidopsis,” Quantitative Plant Biology (2020), in press. (*Contributed equally)

K. Kanazawa, T. G. Sano, A. Cairoli and A. Baule, “Loopy Lévy flights enhance tracer diffusion in active suspensions,” Nature 579 (7799), 364-367 (2020).

T. G. Sano and H. Wada,
"Twist-Induced Snapping in a Bent Elastic Rod and Ribbon,"
Phys. Rev. Lett. 122, 114301 (2019). (Open Access!!)
 
D. Matsumoto, T. G. Sano, and H. Wada,
"Pinching an open cylindrical shell: Extended deformation and its persistence,"
Europhys. Lett., 123 14001 (2018).
 
T. G. Sano and H. Wada,
Snap-buckling in asymmetrically constrained elastic strips,
Phys. Rev. E, 97, 013002 (2018) (arXiv:1708.09304).
Selected for Editors' Suggestion.
 
T. G. Sano, T. Yamaguchi, and H. Wada,
Slip morphology of elastic strips on frictional rigid substrates,
Phys. Rev. Lett., 118, 178001 (2017) (arXiv:1609.00886).
 
T. G. Sano, and H. Hayakawa,
Efficiency at maximum power output for an engine with a passive piston,
Prog. Theor. Exp. Phys. (2016) 083A03 (arXiv: 1412.4468).
 
T. G. Sano, K. Kanazawa, and H. Hayakawa, 
Granular rotor as a probe for a non-equilibrium bath,
Phys. Rev. E, 94, 032910 (2016). (arXiv:1511.08594)
 
Asymptotic derivation of Langevin-like equation with non-Gaussian noise and its analytical solution
K. Kanazawa, T. G. Sano, T. Sagawa and H. Hayakawa, J. Stat. Phys. 160, 1294 (2015)(arXiv: 1412. 2233)
 
Minimal Model of Stochastic Athermal Systems: Origin of Non-Gaussian Noise
K. Kanazawa, T.G. Sano, T. Sagawa and H. Hayakawa, Phys. Rev. Lett. 114, 090601 (2015). (arXiv:1407.5267)
 
Roles of Dry Friction in Fluctuating Motion of Adiabatic Piston
T. G. Sano and H. Hayakawa, Phys. Rev. E 89, 032104 (2014).(arXiv: 1309.7700)
 
Jet-induced jammed states of granular jets
T. G. Sano and H. Hayakawa, Prog. Theor. Exp. Phys. 103J02 (2013).
 
Simulation of granular jets: Is granular flow really a perfect fluid?
T. G. Sano and H. Hayakawa, Phys. Rev. E 86, 041308 (2012). (arXiv: 1206. 6932)
 
 
Proceedings
T. G. Sano and H. Hayakawa, Numerical analysis of impact processes of granular jets, AIP Conf. Proc. 1542, 622 (2013). (arXiv:1211.3533)
T. Sano and H. Hayakawa, Proceedings of ICTAM 23rd Int. Congress of theoretical and applied mechanics, August, Beijing.
 
 
Ph.D Thesis: Studies on non-equilibrium fluctuating motion as a rectifier
Master Thesis: Numerical Analysis of Granular Jet Impacts
 
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