Publication overview

305 publications found in Articles

Strain‐Induced Redistribution of Point Defects in ZnO Nanoparticles
K. Aicher, T. Berger, A. Litovoilis, U. Aschauer, O. Diwald, Strain‐Induced Redistribution of Point Defects in ZnO Nanoparticles, Small Science 6, e202500642: 1-10, (2026)
Path-Dependency and Emergent Computing under Vectorial Driving
Meulblok, C.M., Singh, A., Labousse, M., et al. (2026). Path-Dependency and Emergent Computing under Vectorial Driving Phys. Rev. X, 16(3), 031023: 1–20 doi:http://dx.doi.org/10.1103/2pry-2kqq
Racetrack Computing with a Topological Boundary Ratchet
Omidvar, P., Bestler, M., Fard, S.Z., et al. (2026). Racetrack Computing with a Topological Boundary Ratchet Phys. Rev. Lett., 136(16), 166601: 1–6 doi:http://dx.doi.org/10.1103/jw9p-s3kk
Hysteretic slit-snapping and multistability in buckled beams with partial cuts
B.D. Faulí, L.J. Kwakernaak, M. Hecke, Hysteretic slit-snapping and multistability in buckled beams with partial cuts, Sci. Adv. 12, eaeb9750: 1-9, (2026)
Near-Field Effects on Cathodoluminescence Outcoupling in Perovskite Thin Films
R. Schot, I. Schuringa, A. Rodríguez Echarri, L. Sonneveld, T. Veeken, Y. Lu, S.D. Stranks, A. Polman, B. Ehrler, S. Fiedler, Near-Field Effects on Cathodoluminescence Outcoupling in Perovskite Thin Films, ACS Energy Lett. 11, 3274-3281, (2026)
Controlling Photothermal Forces and Backaction in Nano-Optomechanical Resonators through Strain Engineering
M.H. Jansen, C.M. Kersul, E. Verhagen, Controlling Photothermal Forces and Backaction in Nano-Optomechanical Resonators through Strain Engineering, ACS Photonics 13, 2206-2214, (2026)
Metamaterials that learn to change shape
Y. Du, R. Mastrigt, J. Veenstra, C. Coulais, Metamaterials that learn to change shape, Nat. Phys. 22, 784-790, (2026)
A desynchrony mechanism between events triggers a compensatory delay during Caenorhabditis elegans development
Romero-Expósito, F.J., Moreno-Rivero, A., Muñoz-Barrera, M., et al. (2026). A desynchrony mechanism between events triggers a compensatory delay during Caenorhabditis elegans development PLoS Biol., 24(7), e3003867: 1–20 doi:http://dx.doi.org/10.1371/journal.pbio.3003867
Active steering of cathodoluminescence through a generalized Smith–Purcell effect
Dias, E.J.C., Rodríguez Echarri, A., Rasmussen, T.P., et al. (2026). Active steering of cathodoluminescence through a generalized Smith–Purcell effect Light : Sci. Appl., 15(1), 218: 1–15 doi:http://dx.doi.org/10.1038/s41377-026-02280-y
Transients and multiperiodic responses: a hierarchy of material bits
C.M. Meulblok, M. Hecke, Transients and multiperiodic responses: a hierarchy of material bits, New J. Phys. 28, 025002: 1-15, (2026)
First-Day Degradation and Night-Time Recovery Mechanisms of Lead–Tin Perovskite Solar Cells
D.M. Dekker, A.O. Alvarez, M.C. Schmidt, L. Chen, D. Garcia Romero, M. Pitaro, Q. Feng, M.A. Loi, B. Ehrler, First-Day Degradation and Night-Time Recovery Mechanisms of Lead–Tin Perovskite Solar Cells, J. Phys. Chem. Lett. 17, 3796-3804, (2026)
Flexel ecosystem: Simulating mechanical systems made from entities with arbitrarily complex mechanical responses
P. Ducarme, B. Weber, M. Hecke, J.T.B. Overvelde, Flexel ecosystem: Simulating mechanical systems made from entities with arbitrarily complex mechanical responses, Extreme Mech. Lett., 102476: 1-28, (2026)
Echinoderm‐Inspired Autonomy for Soft‐Legged Robots
Schomaker, H.A.H., Vries, J., & Overvelde, J.T.B. (2026). Echinoderm‐Inspired Autonomy for Soft‐Legged Robots Adv. Robot. Res., e202500128: 1–10 doi:http://dx.doi.org/10.1002/adrr.202500128
Few-atom-thick silver films for enhanced nanoscale nonlinear optics
Jenke, P.K., Abdullah, S., Weber, A.P., et al. (2026). Few-atom-thick silver films for enhanced nanoscale nonlinear optics Nat. Commun., 17(1), 8214: 1–9 doi:http://dx.doi.org/10.1038/s41467-026-74804-4
Ion migration in perovskite solar cells
J. Thiesbrummel, J.V. Milić, C. Deibel, E.C. Garnett, S. Tao, T. Kirchartz, A. Guerrero, P. Cameron, W. Tress, M. Saiful Islam, B. Ehrler, Ion migration in perovskite solar cells, Nat. Rev. Chem. 10, 179-195, (2026)
Global density and biomass of arbuscular mycorrhizal fungal networks
Stewart, J.D., Bisot, C., Cargill, R.I.M., et al. (2026). Global density and biomass of arbuscular mycorrhizal fungal networks Science, 392(6803), 1171–1176 doi:http://dx.doi.org/10.1126/science.adu4373
Photoluminescence Mapping of Mobile and Fixed Defects in Halide Perovskite Films
S.C. Gillespie, J. Gautier, L.M. Ven, A.O. Alvarez, B. Ehrler, B.L.J. Geerlings, V. S. Gevaerts, G. Coletti, E.C. Garnett, Photoluminescence Mapping of Mobile and Fixed Defects in Halide Perovskite Films, ACS Energy Lett. 11, 3330-3339, (2026)
Thermodynamic Irreversibility in Optical Bistability
Keijsers, G., Boer, R.M., Verdonschot, B., et al. (2026). Thermodynamic Irreversibility in Optical Bistability Phys. Rev. Lett., 136(25), 253803: 1–9 doi:http://dx.doi.org/10.1103/mx51-8hbw
Specific Ion Effects in the Near-Surface Molecular Orientation and Surface Coverage of Water
S. Sengupta, J. Versluis, H.J. Bakker, Specific Ion Effects in the Near-Surface Molecular Orientation and Surface Coverage of Water, J. Phys. Chem. Lett. 17, 1751-1759, (2026)
NAC promotes co-translational protein folding at the ribosomal tunnel exit
J. Santos, M. Günnigmann, R.J. Gora, M. Iljina, M. Predin, I.E. Kotan, P. De, D. Choudhary, J. Jang, F. Tippmann, C. Hins, N. Ban, S.J. Tans, S. Shan, G. Kramer, B. Bukau, NAC promotes co-translational protein folding at the ribosomal tunnel exit, Mol. Cell 86, 1311-1326, (2026)
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