W. Jacob

Publication List Details

Period

1984 - 2008

Number

226

Co-Authors

Kohlenstoff und die Plasma-Wand-Wechselwirkung (2006)

Jacob, W.

In the Materials Science Department of IPP processes of the plasma surface interaction in fusion devices are investigated. In this article, experiments in the device MAJESTIX are reported. This...

The influence of hydrogen ion bombardment on plasma-assisted hydrocarbon film growth (2003)

Hopf,C., Von Keudell,A., Jacob,W.

The influence of hydrogen ion bombardment on plasma deposition of amorphous hydrogenated carbon films is investigated in a particle beam experiment employing sources for methyl radicals as carbon...

Modeling of hydrocarbon species in ECR methane plasmas (2003)

Matyash,K., Schneider,R., Bergmann,A., Jacob,W., Fantz,U., Percher,P.

ECR methane laboratory plasmas are modeled using both a simple zero-dimensional particle balance model and a fully kinetic model. The kinetic model consists of a two-dimensional in space,...

Can plasma experiments unravel microscopic surface processes in thin film growth and erosion? Implications of particle–beam experiments on the understanding of a-C:H growth (2003)

Schwarz-Selinger,T., Meier,M., Hopf,C., Von Keudell,A., Jacob,W.

Despite the widespread use of low-temperature plasmas for deposition and erosion of thin films and surface modification the underlying microscopic mechanisms are often not well understood, especially...

Can plasma experiments unravel microscopic surface processes in thin film growth and erosion? Implications of particle–beam experiments on the understanding of a-C:H growth (2003)

Schwarz-Selinger,T., Meier,M., Hopf,C., Von Keudell,A., Jacob,W.

Despite the widespread use of low-temperature plasmas for deposition and erosion of thin films and surface modification the underlying microscopic mechanisms are often not well understood, especially...

Modeling of hydrocarbon species in ECR methane plasmas (2003)

Matyash, K., Schneider, R., Bergmann, A., Jacob, W., Fantz, U., Percher, P.

ECR methane laboratory plasmas are modeled using both a simple zero-dimensional particle balance model and a fully kinetic model. The kinetic model consists of a two-dimensional in space,...

Can plasma experiments unravel microscopic surface processes in thin film growth and erosion? Implications of particle–beam experiments on the understanding of a-C:H growth (2003)

Schwarz-Selinger, T., Meier, M., Hopf, C., Von Keudell, A., Jacob, W.

Despite the widespread use of low-temperature plasmas for deposition and erosion of thin films and surface modification the underlying microscopic mechanisms are often not well understood, especially...

The energy influx during plasma deposition of amorphous hydrogenated carbon films (2002)

Rohde,D., Pecher,R., Kersten,H., Jacob,W., Hippler,R.

The integral energy influx from the plasma to the substrate was determined for amorphous hydrogenated carbon (a-C:H) film deposition by magnetron sputtering and in an electron cyclotron resonance...

Modeling of ECR methane plasmas (2002)

Matyash,K., Schneider,R., Bergmann,A., Jacob,W., Fantz,U., Pecher,P.

ECR hydrocarbon laboratory plasmas are modeled using both a simple zero dimensional particle balance model and a fully kinetic model. The kinetic model consists of a 2-dimensional in space,...

Modeling of ECR methane plasmas (2002)

Matyash, K., Schneider, R., Bergmann, A., Jacob, W., Fantz, U., Pecher, P.

ECR hydrocarbon laboratory plasmas are modeled using both a simple zero dimensional particle balance model and a fully kinetic model. The kinetic model consists of a 2-dimensional in space,...

The energy influx during plasma deposition of amorphous hydrogenated carbon films (2002)

Rohde, D., Pecher, R., Kersten, H., Jacob, W., Hippler, R.

The integral energy influx from the plasma to the substrate was determined for amorphous hydrogenated carbon (a-C:H) film deposition by magnetron sputtering and in an electron cyclotron resonance...