30 research outputs found

    Towards the entanglement negativity of two disjoint intervals for a one dimensional free fermion

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    We study the moments of the partial transpose of the reduced density matrix of two intervals for the free massless Dirac fermion. By means of a direct calculation based on a coherent state path integral, we find an analytic form for these moments in terms of the Riemann theta function. We show that moments of arbitrary order are equal to the same quantities for the compactified boson at the self-dual point. These equalities also imply the nontrivial result that the negativity of the free fermion and the self-dual boson are equal

    Analysis of protein carbonylation - pitfalls and promise in commonly used methods

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    Abstract Oxidation of proteins has received a lot of attention in the last decades due to the fact that they have been shown to accumulate and to be implicated in the progression and the patho-physiology of several diseases such as Alzheimer, coronary heart diseases, etc. This has also resulted in the fact that research scientist became more eager to be able to measure accurately the level of oxidized protein in biological materials, and to determine the precise site of the oxidative attack on the protein, in order to get insights into the molecular mechanisms involved in the progression of diseases. Several methods for measuring protein carbonylation have been implemented in different laboratories around the world. However, to date no methods prevail as the most accurate, reliable and robust. The present paper aims at giving an overview of the common methods used to determine protein carbonylation in biological material as well as to highlight the limitations and the potential. The ultimate goal is to give quick tips for a rapid decision making when a method has to be selected and taking into consideration the advantage and drawback of the methods

    Seismic Isolation – Usage of seismic base isolation to reduce the ductility demand for concrete elements

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    This master thesis describes the concept of seismic isolation, and its effect on the behavior of reinforced concrete structures under the influence of seismic action. The purpose of using seismic isolation is to consume some of the energy introduced and reduce the demand for energy dissipation within structural elements. The study of this phenomenon was done by addressing its basic purpose and methods of analysis. To present the effectiveness of base isolation on controlling deformations in reinforced concrete structures, a typical multi-story structure is modeled with and without seismic isolation, analyzing their dynamic behavior with computer simulations. The obtained results are presented graphically and tabularly, including the respective displacements, pseudo-relative accelerations and relative inter-story drifts for both, as well as the rotational moments presented in all plastic hinges and their comparison between the two models together with EC-8 requirements

    2. Wettstreit und Verwandlung

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    Towards a Borgean Musical Space: An Experimental Interface for Exploring Musical Models

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    International audienceMusical compositions can be the object of advanced computational modelling. We develop this idea by creating formal models allowing the study of musical works from the repertoire and conceiving corresponding computational tools. From this perspective, one can aim to model, produce and evaluate different instances and configurations of such models. In this paper we discuss an experimental tool, as an attempt to visualise the space of instances that can be generated from a musical piece's model. This tool consists in an interface attached to a class in the OpenMusic environment, where parameter values are compared with the result of analytical descriptors, as that of 'cognitive-sonance' from the " Sonic Object Analysis Library " (SOAL). We demonstrate how this interface works by exploring it with a previously built model of James Tenney's piece, the Spectral Canon for Conlon Nancarrow
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