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Martin Siebel

Publications and source records attributed to Martin Siebel.

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Gas sensing potential of stacked graphene/h-BN structures: a DFT-based investigation

Using periodic DFT, we examined the adsorption of NO2, NH3, and O3 on the h-BN side of a graphene/h-BN heterostructure designed as a model gas sensor material. The h-BN overlayer serves both as an active adsorption surface and as protection that may reduce irreversible processes such as graphene oxidation. Two model systems were considered: an extended graphene/h-BN bilayer (B36N36C72) and a graphene sheet partially covered by a smaller h-BN island (B11N11C72). Their electronic structures differ strongly near the Dirac point. In the extended bilayer, the Fermi level remains aligned with that of pristine graphene, indicating negligible charge transfer. In the island-covered system, the Fermi level shifts to lower energies, reflecting electron transfer from graphene to h-BN. These differences lead to distinct adsorption behavior. NO2 binds much more strongly to B11N11C72, forming a chemical bond, while O3 dissociates on this surface but remains intact on the extended bilayer. NH3 unusually acts as an electron acceptor in the island system. Overall, NO2 and O3 substantially increase graphene conductivity, whereas NH3 induces much weaker changes. These results highlight the potential of graphene/h-BN heterostructures for gas sensing.

cond-mat.mtrl-sci

A Study of the Charge of Leading Hadrons in Gluon and Quark Fragmentation

In this study the electric charges of leading systems in quark and gluon jets from hadronic three-jet events in $e^+e^-$-annihilation measured with the DELPHI-experiment are examined. Leading systems are defined by a rapidity gap between the leading system of a jet and the rest of the event. The measured charge distributions are compared with results from Monte-Carlo simulations which do not contain colour-octet neutralisation processes. In the data an enhanced production of neutral leading systems compared to Monte-Carlo predictions is found in gluon jets, which is compatible with the expectations from colour-octet neutralisation. The quark jet sample is found in agreement with the simulation.

hep-ex

Quark and gluon jet properties at LEP

The study of the differences of the fragmentation of quarks and gluons to jets of hadrons gives insight into the fundamental structure of QCD. Results from different approaches to properties of quarks and gluons are shown. The colour factor ratio $C_A/C_F$ is measured in agreement with the QCD prediction. Identified particles in quark and gluon jets are investigated, revealing no overproduction of isoscalar $η^0$ and $ϕ(1020)$ in gluon jets, but an excess of protons.

hep-ex