Daniel Midtvedt
Daniel Midtvedt
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Cited by
Cited by
A pH-driven transition of the cytoplasm from a fluid-to a solid-like state promotes entry into dormancy
MC Munder, D Midtvedt, T Franzmann, E Nuske, O Otto, M Herbig, ...
elife 5, e09347, 2016
Determination of the bending rigidity of graphene via electrostatic actuation of buckled membranes
N Lindahl, D Midtvedt, J Svensson, OA Nerushev, N Lindvall, A Isacsson, ...
Nano letters 12 (7), 3526-3531, 2012
Nonlinear damping in graphene resonators
A Croy, D Midtvedt, A Isacsson, JM Kinaret
Physical Review B 86 (23), 235435, 2012
Frequency tuning, nonlinearities and mode coupling in circular mechanical graphene resonators
AM Eriksson, D Midtvedt, A Croy, A Isacsson
Nanotechnology 24 (39), 395702, 2013
Fermi-pasta-ulam physics with nanomechanical graphene resonators: intrinsic relaxation and thermalization from flexural mode coupling
D Midtvedt, A Croy, A Isacsson, Z Qi, HS Park
Physical review letters 112 (14), 145503, 2014
Strain–displacement relations for strain engineering in single-layer 2d materials
D Midtvedt, CH Lewenkopf, A Croy
2D Materials 3 (1), 011005, 2016
Carbon nanotube field effect transistors with suspended graphene gates
J Svensson, N Lindahl, H Yun, M Seo, D Midtvedt, Y Tarakanov, ...
Nano letters 11 (9), 3569-3575, 2011
Size and refractive index determination of subwavelength particles and air bubbles by holographic nanoparticle tracking analysis
D Midtvedt, F Eklund, E Olsén, B Midtvedt, J Swenson, F Höök
Analytical chemistry 92 (2), 1908-1915, 2019
Nonlinear phononics using atomically thin membranes
D Midtvedt, A Isacsson, A Croy
Nature communications 5 (1), 1-6, 2014
Parametric resonance in nanoelectromechanical single electron transistors
D Midtvedt, Y Tarakanov, J Kinaret
Nano letters 11 (4), 1439-1442, 2011
Label-free spatio-temporal monitoring of cytosolic mass, osmolarity, and volume in living cells
D Midtvedt, E Olsén, F Höök, GDM Jeffries
Nature communications 10 (1), 1-9, 2019
Intracellular mass density increase is accompanying but not sufficient for stiffening and growth arrest of yeast cells
S Abuhattum, K Kim, TM Franzmann, A Eßlinger, D Midtvedt, R Schlüßler, ...
Frontiers in Physics 6, 131, 2018
Multi-scale approach for strain-engineering of phosphorene
D Midtvedt, CH Lewenkopf, A Croy
Journal of Physics: Condensed Matter 29 (18), 185702, 2017
The Matrix protein M1 from influenza C virus induces tubular membrane invaginations in an in vitro cell membrane model
D Saletti, J Radzimanowski, G Effantin, D Midtvedt, S Mangenot, ...
Scientific reports 7 (1), 1-14, 2017
Membrane deformation induces clustering of norovirus bound to glycosphingolipids in a supported cell-membrane mimic
N Parveen, I Rimkute, S Block, GE Rydell, D Midtvedt, G Larson, ...
The journal of physical chemistry letters 9 (9), 2278-2284, 2018
Nü ske E
MC Munder, D Midtvedt, T Franzmann
Otto O, Herbig M, Ulbricht E, Mü ller P, Taubenberger A, Maharana S …, 2016
Fast and Accurate Nanoparticle Characterization Using Deep-Learning-Enhanced Off-Axis Holography
B Midtvedt, E Olsén, F Eklund, F Höök, CB Adiels, G Volpe, D Midtvedt
ACS nano, 0
Strain-tuning of vacancy-induced magnetism in graphene nanoribbons
D Midtvedt, A Croy
Journal of Physics: Condensed Matter 28 (4), 045302, 2016
Comment on ‘Parametrization of Stillinger–Weber potential based on a valence force field model: application to single-layer MoS2 and black phosphorus’
D Midtvedt, A Croy
Nanotechnology 27 (23), 238001, 2016
Valence-force model and nanomechanics of single-layer phosphorene
D Midtvedt, A Croy
Physical Chemistry Chemical Physics 18 (33), 23312-23319, 2016
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