1 |
Physical modelling of Czochralski crystal growth in horizontal magnetic field Grants I, Pal J, Gerbeth G Journal of Crystal Growth, 470, 58, 2017 |
2 |
Thermophysical Properties of the Liquid Ga-In-Sn Eutectic Alloy (vol 59, pg 757, 2014) Plevachuk Y, Sklyarchuk V, Eckert S, Gerbeth G, Novakovic R Journal of Chemical and Engineering Data, 60(9), 2756, 2015 |
3 |
Physical modelling of temperature fluctuations in a high aspect ratio model of the Czochralski crystal growth Pal J, Cramer A, Grants I, Eckert S, Gerbeth G Journal of Crystal Growth, 432, 69, 2015 |
4 |
Thermophysical Properties of the Liquid Ga-In-Sn Eutectic Alloy Plevachuk Y, Sklyarchuk V, Eckert S, Gerbeth G, Novakovic R Journal of Chemical and Engineering Data, 59(3), 757, 2014 |
5 |
Numerical modeling of bubble-driven liquid metal flows with external static magnetic field Miao X, Lucas D, Ren Z, Eckert S, Gerbeth G International Journal of Multiphase Flow, 48, 32, 2013 |
6 |
Rayleigh-Benard instability of Czochralski configuration in a transverse magnetic field Grants I, Gerbeth G Journal of Crystal Growth, 358, 43, 2012 |
7 |
Numerical and experimental modeling of VGF-type buoyant flow under the influence of traveling and rotating magnetic fields Galindo V, Niemietz K, Patzold O, Gerbeth G Journal of Crystal Growth, 360, 30, 2012 |
8 |
How to circumvent the size limitation of liquid metal batteries due to the Tayler instability Stefani F, Weier T, Gundrum T, Gerbeth G Energy Conversion and Management, 52(8-9), 2982, 2011 |
9 |
Flow modelling with relevance to vertical gradient freeze crystal growth under the influence of a travelling magnetic field Niemietz K, Galindo V, Patzold O, Gerbeth G, Stelter M Journal of Crystal Growth, 318(1), 150, 2011 |
10 |
Magnetic field controlled single crystal growth and surface modification of titanium alloys exposed for biocompatibility Hermann R, Uhlemann M, Wendrock H, Gerbeth G, Buchner B Journal of Crystal Growth, 318(1), 1048, 2011 |