Publication overview

389 publications found

Robustness of Clocks to Input Noise
M. Monti, D.K. Lubensky, P.R. Wolde, Robustness of Clocks to Input Noise, Phys. Rev. Lett. 121, 1-6, (2018)
Edge of Chaos: Towards intelligent architecture through distributed control systems based on Cellular Automata
G. Ruairi, V. Abramovic, J.T.B. Overvelde, Edge of Chaos: Towards intelligent architecture through distributed control systems based on Cellular Automata, (2018)
Programeerbare metamaterialen
J.T.B. Overvelde, Programeerbare metamaterialen, NTvN, 243-245, (2018)
Rational design of reconfigurable prismatic architected materials
J.T.B. Overvelde, J.C. Weaver, C. Hoberman, K. Bertoldi, Rational design of reconfigurable prismatic architected materials, Nature 541, 347-352, (2017)
Photon bunching reveals single-electron cathodoluminescence excitation efficiency in InGaN quantum wells
S. Meuret, T. Coenen, H. Zeijlemaker, M. Latzel, S. Christiansen, S. Conesa-Boj, A. Polman, Photon bunching reveals single-electron cathodoluminescence excitation efficiency in InGaN quantum wells, Phys. Rev. B 96, 1-8, (2017)
Force percolation of contractile active gels
J. Alvarado, M. Sheinman, A. Sharma, F.C. MacKintosh, G.H. Koenderink, Force percolation of contractile active gels, Soft Matter 13, 5624-5644, (2017)
Building smart materials with flexible building blocks
C. Coulais, Building smart materials with flexible building blocks, Amsterdam Sci. [3], 12, (2017)
Watching larvae grow up – in real time
J.S. Zon, Watching larvae grow up - in real time, Amsterdam Sci. [3], 14, (2017)
Shining light on Nature’s raincoat
K. Meister, Shining light on Nature's raincoat, Amsterdam Sci. [3], 5, (2017)
Telling time while dividing
J. Paijmans, Telling time while dividing, Amsterdam Sci. [3], 21, (2017)
Phenotypic diversity and temporal variability in a bacterial signaling network revealed by single-cell FRET
J.M. Keegstra, K. Kamino, F. Anquez, M.D. Lazova, T. Emonet, T.S. Shimizu, Phenotypic diversity and temporal variability in a bacterial signaling network revealed by single-cell FRET, eLife 6, 1-33, (2017)
Antennes op nanoschaal : Hoe Abbe, Stokes, Fourier en Fresnel springlevend zijn
C.I. Osorio, M. Kamp, A.F. Koenderink, Antennes op nanoschaal : Hoe Abbe, Stokes, Fourier en Fresnel springlevend zijn, NTvN 81, 150-153, (2015)
Delayed exciton emission and its relation to blinking in CdSe quantum dots
F.T. Rabouw, M. Kamp, R.J.A. Dijk-Moes, D.R. Gamelin, A.F. Koenderink, A. Meijerink, Daniël A. Vanmaekelbergh, Delayed exciton emission and its relation to blinking in CdSe quantum dots, Nano Lett. 15, 7718-7725, (2015)
From crystal and NMR structures, footprints and cryo-electron-micrographs to large and soft structures: nanoscale modeling of the nucleosomal stem
S. Meyer, N.B. Becker, S.H. Syed, D. Goutte-Gattat, M.S. Shukla, J.J. Hayes, D. Angelov, J. Bednar, S. Dimitrov, R. Everaers, From crystal and NMR structures, footprints and cryo-electron-micrographs to large and soft structures: nanoscale modeling of the nucleosomal stem, Nucleic Acids Res. 39, 9139-9154, (2011)
Automated, feature-based image alignment for high-resolution imaging mass spectrometry of large biological samples
Broersen, A., Liere, R., Altelaar, A.F.M., et al. (2008). Automated, feature-based image alignment for high-resolution imaging mass spectrometry of large biological samples J. Am. Soc. Mass Spectrom., 19, 823–832 doi:http://dx.doi.org/10.1016/j.jasms.2008.02.015
Chemical modification of colloidal masks for nanolithography
Vossen, D.L.J., Penninkhof, J.J., & Blaaderen, A. (2008). Chemical modification of colloidal masks for nanolithography Langmuir, 24(11), 5967–5969 doi:http://dx.doi.org/10.1021/la703847p
Optical cavity modes in gold shell colloids
Penninkhof, J.J., Sweatlock, L.A., Moroz, A., et al. (2008). Optical cavity modes in gold shell colloids J. Appl. Phys., 103(Article number: 123105), 1–7 doi:http://dx.doi.org/10.1063/1.2939249
Dynamics and regulation at the tip: a high resolution view on microtubule assembly
Munteanu, E.L. (2008). Dynamics and regulation at the tip: a high resolution view on microtubule assembly.
High trapping forces for high-refractive index particles trapped in dynamic arrays of counterpropagating optical tweezers
Horst, A., Oostrum, P.D.J., Moroz, A., et al. (2008). High trapping forces for high-refractive index particles trapped in dynamic arrays of counterpropagating optical tweezers Appl. Opt., 47, 3196–3202 doi:http://dx.doi.org/10.1364/ao.47.003196
Controlling the efficiency of an artificial light-harvesting complex
J. Savolainen, R. Fanciulli, N. Dijkhuizen, A.L. Moore, J. Hauer, T. Buckup, M. Motzkus, J. Herek, Controlling the efficiency of an artificial light-harvesting complex, PNAS 105, 7641-7646, (2008)
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