Conducting ion tracks in tetrahedral amorphous carbon (ta-C) thin films were generated by irradiation with swift heavy ions of well-defined charge state. The conductivity of tracks and the surface topography of the films, showing characteristic hillocks at each track position, were investigated using conductive atomic force microscopy measurements. The dependence of track conductivity and hillock size on the charge state of the ions was studied using 4.6 MeV/u Pb ions of charge state 53+, 56+ and 60+ provided by GANIL, as well as 4.8 MeV/u Bi and Au ions of charge state from 50+ to 61+ and 4.2 MeV/u 238U ions in equilibrium charge state provided by UNILAC of GSI. For the charge state selection at GSI, an additional stripper-foil system was ...
An verschiedenen Kohlenstoffmaterialien wurden Bestrahlungseffekte im elektronischen ...
An overview is given about the strategies to create a novel Swift heavy Ion Track Electronics SIT...
Ion track lithography is well established and is based on heavy ions of several hundred MeV energy ...
Abstract. We investigated the formation of quasi one-dimensional conducting filaments in tetra-hedra...
This paper gives an extended overview of the electrical properties of ion tracks in hydrogen-free te...
In insulating tetrahedral amorphous carbon (ta-C), the irradiation with 30-MeV C60 cluster ions lead...
Electrically conducting thin filaments were produced in diamond-like carbon (DLC) films by heavy ion...
Amorphous carbon films have been irradiated with Cl-ions with energies between 1 and 40 MeV, and the...
Highly energetic heavy ions with energies of 1 MeV/nucleon or more (e.g. 350 MeV Au ions) result in ...
Amorphous carbon films have attracted much interest because their physical properties can be tuned b...
Die Bestrahlung von tetraedrisch amorphen Kohlenstoff (ta-C) mit schnellen schweren Ionen führt zur ...
Ion irradiation of tetrahedral amorphous carbon (ta-C) thin films induces a carbon phase transformat...
Conducting carbon films prepared by pyrolysis of perylene-3,4,9,10-tetracarboxylic dianhydride (PTCD...
Amorphous hydrogenated carbon films were prepared by plasma assisted CVD method. Their de conductivi...
We report the graphitization of ultrathin (8 nm) amorphous carbon films on Si(001) by 2 MeV Ar+ ion ...
An verschiedenen Kohlenstoffmaterialien wurden Bestrahlungseffekte im elektronischen ...
An overview is given about the strategies to create a novel Swift heavy Ion Track Electronics SIT...
Ion track lithography is well established and is based on heavy ions of several hundred MeV energy ...
Abstract. We investigated the formation of quasi one-dimensional conducting filaments in tetra-hedra...
This paper gives an extended overview of the electrical properties of ion tracks in hydrogen-free te...
In insulating tetrahedral amorphous carbon (ta-C), the irradiation with 30-MeV C60 cluster ions lead...
Electrically conducting thin filaments were produced in diamond-like carbon (DLC) films by heavy ion...
Amorphous carbon films have been irradiated with Cl-ions with energies between 1 and 40 MeV, and the...
Highly energetic heavy ions with energies of 1 MeV/nucleon or more (e.g. 350 MeV Au ions) result in ...
Amorphous carbon films have attracted much interest because their physical properties can be tuned b...
Die Bestrahlung von tetraedrisch amorphen Kohlenstoff (ta-C) mit schnellen schweren Ionen führt zur ...
Ion irradiation of tetrahedral amorphous carbon (ta-C) thin films induces a carbon phase transformat...
Conducting carbon films prepared by pyrolysis of perylene-3,4,9,10-tetracarboxylic dianhydride (PTCD...
Amorphous hydrogenated carbon films were prepared by plasma assisted CVD method. Their de conductivi...
We report the graphitization of ultrathin (8 nm) amorphous carbon films on Si(001) by 2 MeV Ar+ ion ...
An verschiedenen Kohlenstoffmaterialien wurden Bestrahlungseffekte im elektronischen ...
An overview is given about the strategies to create a novel Swift heavy Ion Track Electronics SIT...
Ion track lithography is well established and is based on heavy ions of several hundred MeV energy ...