Springe zum Hauptinhalt
Universitätsbibliothek
Universitätsbibliographie

Ergebnis der Datenbankabfrage

Nr. Titel Autor Jahr
1 Experimental observation of Berry phases in optical Möbius-strip microcavities Wang, Jiawei et al. 2023
2 Switching Propulsion Mechanisms of Tubular Catalytic Micromotors Wrede, Paul et al. 2021
3 Three-Dimensional Superconducting Nanohelices Grown by He+-Focused-Ion-Beam Direct Writing Córdoba, Rosa* et al. 2019
4 Voltage Induced by Superconducting Vortices in Open Nanostructured Microtubes Rezaev, Roman et al. 2019
5 Optical Berry Phase in Micro/Nano-rings Ma, Libo* et al. 2018
6 Swimming Microrobots: Soft, Reconfigurable, and Smart Medina‐Sánchez, Mariana* et al. 2018
7 In-Plane Thermal Conductivity of Radial and Planar Si/SiOx Hybrid Nanomembrane Superlattices Li, Goudong* et al. 2017
8 Superconducting properties of nanostructured microhelices Fomin, Vladimir M.* et al. 2017
9 Electrical Properties of Hybrid Nanomembrane/Nanoparticle Heterojunctions: The Role of Inhomogeneous Arrays Bendova, Maria et al. 2016
10 Light-Induced Motion of Microengines Based on Microarrays of TiO2 Nanotubes Enachi, Mihail et al. 2016
11 Phonon-engineered thermal transport in Si wires with constant and periodically modulated cross-sections: A crossover between nano- and microscale regimes Cocemasov, A. I. et al. 2015
12 Supervised discriminant analysis for droplet micro-magnetofluidics Lin, Gungun* et al. 2015
13 Excitons Confined in Single Semiconductor Quantum Rings: Observation and Manipulation of Aharonov-Bohm-Type Oscillations Ding, F. et al. 2014
14 Asymmetric drag in oscillatory motion: Ratchet effect without an asymmetric potential Fomin, Vladimir M. et al. 2013
15 Tunable Generation of Correlated Vortices in Open Superconductor Tubes Fomin, Vladimir M. et al. 2012
16 Dynamics of radial-magnetized microhelix coils Fomin, Vladimir M. et al. 2011
17 Magnetic Microhelix Coil Structures Smith, Elliot J. et al. 2011
Aktuelle Seite:
Anzahl der Ergebnisseiten: 1
Anzahl der Dokumente: 17

Soziale Medien

Verbinde dich mit uns: