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Virtual machines are for the most part not used inside of high-energy physics (HEP) environments. Even though they provide a high degree of isolation, the performance overhead they introduce is too great for them to be used. With the rising number of container technologies and their increasing separation capabilities, HEP-environments are evaluating if they could utilize the technology. The container images are small and self-contained which allows them to be easily distributed throughout the global environment. They also offer a near native performance while at the same time aproviding an often acceptable level of isolation. Only the needed services and libraries are packed into an image and executed directly by the host kernel. This work compared the performance impact of the three container technologies Docker, rkt and Singularity. The host kernel was additionally hardened with grsecurity and PaX to strengthen its security and make an exploitation from inside a container harder. The execution time of a physics simulation was used as a benchmark. The results show that the different container technologies have a different impact on the performance. The performance loss on a stock kernel is small; in some cases they were even faster than no container. Docker showed overall the best performance on a stock kernel. The difference on a hardened kernel was bigger than on a stock kernel, but in favor of the container technologies. rkt showed performed in almost all cases better than all the others.
Anisotropic collective flow of protons resulting from non-central heavy ion collisions is a unique hadronic observable providing information about the early stage of the nuclear collision. The analysis of collective flow in the energy regime between 1-2 AGeV enables the study of the phase diagram of hadronic matter at a high baryochemical potential µb, as well as the analysis of the equation of state at densities up to the threefold of the ground state density ρ0.
The algorithms of the standard event plane method and the scalar product method are used to analyse directed and elliptic flow of protons in a centrality range of 0-40 % most central events.
Prior to the analysis of experimental data, the respective influence of the reconstruction procedure on the algorithms is examined using Monte Carlo simulations based on the Ultra relativistic Quantum Molecular Dynamics (UrQMD) model.
Subsequently, experimental data measured in April 2012 with the High Acceptance DiElectron Spectrometer (HADES) is analysed using both methods. About 7.3 · 109 Au+Au events at a kinetic beam energy of 1.23 AGeV, equivalent to a centre of mass energy of √sNN = 2.42 GeV were recorded. A multi-differential analysis is feasible as the HADES detector provides a good transverse momentum and rapidity coverage.
Both algorithms result in identical values for directed and elliptic flow across all centrality classes within the observable phase space of protons. The calculated integrated value of v2 at mid rapidity is in good agreement with world data.
Die Arbeit widmet sich der bisher wenig beachteten Demokratietheorie des neoliberalen Ökonomen und Sozialphilosophen Friedrich Hayeks. In seiner Ablehnung des Prinzips der Volkssouveränität scheint es Hayek nicht in erster Linie um die Kritik des demokratischen Elements zu gehen, sondern vielmehr um die moderne Idee staatlicher Souveränität schlechthin. Es ist folglich die Idee der Rechtssouveränität, so die grundlegende These, auf der Hayek seine doppelte Kritik von Naturrecht und Rechtspositivismus gründet. Entprechend ist der Staat in der von Hayek gezeichneten Utopie nicht länger Souverän, Ausdruck, Grund oder Herrscher (in) der Gesellschaft, sondern bloßes Mittel, um die "spontanen Ordnungen" der Gesellschaft (und der Märkte) zu schützen, ohne durch Gesetzgebung planen, gestalten oder intervenieren zu wollen. Allein solches, an den "Nomos" gebundenes, staatliches Handeln könne (und muss!) der "Meinung" der Menschen entsprechen. Die Klärung dieses sehr speziellen und auf David Hume zurückgehenden Verständnisses von "Meinung" erlaubt schließlich, das Denken Hayeks nicht nur hinsichtlich seines Souveränitätsbegriffs, sondern auch hinsichtlich seines Demokratiebegriffs vom Denken Carl Schmitts abzugrenzen. Entgegen dem prägenden Diskurs nach Cristi und Scheuerman, der die Kritik der hayekschen Theorie über die Problematisierung ihres schmittschen Gehalt unternimmt, soll die Arbeit den Blick dafür schärfen, dass der in Hayeks Theorie angelegte Autoritarismus auf eigenen philosophischen Füßen steht und sich nicht erschöpfend aus einem bewusst oder unbewusst übernommenen schmittschen Erbe erklären lässt.
In April and May 2012 data on Au+Au collisions at beam energies of Ekin = 1.23A GeV were collected with the High Acceptance Di-Electron Spectrometer (HADES) at the GSI Helmholtzzentrum für Schwerionenforschung facility in Darmstadt, Germany. In this thesis, the production of deuterons in this collision system is investigated.
A total number of 2.1 × 109 Au+Au events is selected, containing the most central 0-40% of events. After particle identification, based on a mass determination via time-of-flight and momentum and on a measurement of the energy loss, the transverse mass spectra of the deuteron candidates are extracted for various rapidities and subsequently corrected for acceptance and efficiency.
The inverse slope parameter of a Boltzmann fit applied to the transverse mass spectra at midrapidity, which is referred to as the effective temperature, is extracted. For a static thermal source, this parameter corresponds to the kinetic freeze-out temperature Tkin and is therefore expected to be smaller or equal to the chemical freeze-out temperature Tchem. The extracted effective temperature of Tef f = (190 ± 10) MeV however exceeds the chemical freeze-out temperature that was obtained by a statistical model fit to different particle yields. The effective temperatures of various particle species, obtained in previous analyses, suggest a systematic rise with increasing particle mass, which is confirmed by the deuteron results.
An explanation can be the influence of a collective expansion with a radial expansion velocity βr. By fitting a Siemens-Rasmussen function to the transverse mass spectra, the global temperature of T = (100 ± 8) MeV and radial expansion velocity βr = 0.37 ± 0.01 are obtained. This temperature is still very high and only takes into account the production of deuteron nuclei.
The simultaneous fit of a blast-wave function to the transverse mass spectra of deuterons and other particles, as obtained by previous analyses, considers a velocity profile for the radial expansion velocity and takes into account the production of various particle species. The resulting global temperature Tkin = (68 ± 1) MeV and average transverse expansion velocity hβri = 0.341 ± 0.003 are within the expected range for the collision energy.
The Siemens-Rasmussen fits are also used to extrapolate the transverse mass spectra into unmeasured regions, to integrate them and obtain a rapidity-dependent count rate. This count rate exhibits a thermal shape for central events and shows increasing spectator contributions for more peripheral events.
The invariant yield spectra of the deuterons are compared to those of protons, as obtained by a previous analysis, in the context of a nucleon coalescence model. The hereby extracted nucleon coalescence factor B2 = (4.6 ± 0.1) × 10−3 agrees with the expected result for the beam energy that was studied.
Der digitale Wandel wirkt sich auf das alltägliche Leben in der modernen Lebenswelt im 21. Jahrhundert aus. Ob im Berufs- oder Privatleben, digitale Medien sind nicht mehr aus dem alltäglichen Leben wegzudenken und sie erleichtern das Leben maßgeblich.
E-Learning wird insbesondere in der Erwachsenenbildung benutzt und diese Branche "boomt". Umstritten ist dennoch, ob digitale Medien und E-Learning in Schulen eingesetzt werden sollten und ob ein Lernen und Lehren mit neuen Medien sinnvoll ist. Derzeitig ist keine bundesweite einheitliche Lehrerausbildung bezüglich des Umgangs mit digitalen Medien im Kontext Lehren und Lernen und den damit verbundenen Herausforderungen vorhanden.
Es stellt sich die Frage, wie neue Medien im Unterricht verwendet werden und welche Aspekte beim Lehren zu beachten sind.
Der digitale Wandel wirkt sich auf das alltägliche Leben in der modernen Lebenswelt im 21. Jahrhundert aus. Ob im Berufs- oder Privatleben, digitale Medien sind nicht mehr aus dem alltäglichen Leben wegzudenken und sie erleichtern das Leben maßgeblich.
E-Learning wird insbesondere in der Erwachsenenbildung benutzt und diese Branche "boomt". Umstritten ist dennoch, ob digitale Medien und E-Learning in Schulen eingesetzt werden sollten und ob ein Lernen und Lehren mit neuen Medien sinnvoll ist. Derzeitig ist keine bundesweite einheitliche Lehrerausbildung bezüglich des Umgangs mit digitalen Medien im Kontext Lehren und Lernen und den damit verbundenen Herausforderungen vorhanden.
Es stellt sich die Frage, wie neue Medien im Unterricht verwendet werden und welche Aspekte beim Lehren zu beachten sind.
Electron identification with a likelihood method and measurements of di-electrons for the CBM-TRD
(2017)
In this work a likelihood method has been implemented and investigated as particle identification algorithm for the CBM-TRD.
The creation of the probability distributions for the likelihood method via V0-topologies seems to be feasible and the purity of the obtained samples is sufficient for the usage in the likelihood method.
The comparison between the ANN and the likelihood method shows no differences in the identification performance. The pion suppression factor reaches the same values for the same electron identification efficiencies and the yields of the resulting di-lepton signals are comparable. The signal-to-background ratios for both methods have the same values and show a value of about 10−2 in the invariant mass range of minv = 1.5 - 2.5 GeV/c2, which is expected to be sufficient to provide access to the thermal in-medium and QGP radiation.
The investigation of a detector system without a TRD shows no pion suppression for a momentum above p = 6 GeV/c. Therefore, the background contributions increase drastically and the signal-to-background ratio decreases at all invariant masses, but especially in the invariant mass range of minv = 1.5 - 2.5 GeV/c2.
The background contributions in the invariant mass range of minv = 1.5 - 2.5 GeV/c 2 are also influenced by the selected electron identification efficiency of the TRD, which significantly shifts the fraction of the eπ contributions relative to the total number of pairs.
Gabor lenses were invented for focusing hadron beams by the electric field of a confined electron column. A homogenous magnetic field created by a solenoid confines electrons in transverse direction while a potential well created by a cylindrical electrode system confines them longitudinally.
In this thesis the investigation and characterization of a nonneutral electron plasma (NNP) in a Gabor lens with a toroidal magnetic confinement and a 30 degree-bent anode is presented. Motivated by fundamental research on NNPs in this special environment, diagnostic methods were investigated to characterize the plasma. As a non-invasive method a PCO camera is placed in front of the experimental setup. A ring of 31 photodiodes is used inside the plasma for light intensity and distribution measurements. The experimental data is evaluated and the following results will be presented.
Cleaning an ion beam from unwanted fractions is crucial for intense ion beams. This thesis will explore separation methods using a collimation channel, electric and magnetic dipoles and a velocity selector for low intensity beams on an experimental basis. In addition, statistical data of degassing events during the commissioning of a pentode extraction system for beam energies from 20 - 120keV will be presented.