668 resultados para Bethe ansatz


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We apply to total cross-sections our model for soft gluon resummation in the infrared region. The model aims to probe large distance interactions in QCD. Our ansatz for an effective coupling for gluons and quarks in the infrared region follows an inverse power law which is singular but integrable. In the context of an eikonal formalism with QCD mini-jets, we study total hadronic cross-sections for protons, pions, photons. We estimate the total inelastic cross-section at LHC comparing with recent measurements and update previous results for survival probability.

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We study the phase diagram of the ionic Hubbard model (IHM) at half filling on a Bethe lattice of infinite connectivity using dynamical mean-field theory (DMFT), with two impurity solvers, namely, iterated perturbation theory (IPT) and continuous time quantum Monte Carlo (CTQMC). The physics of the IHM is governed by the competition between the staggered ionic potential Delta and the on-site Hubbard U. We find that for a finite Delta and at zero temperature, long-range antiferromagnetic (AFM) order sets in beyond a threshold U = U-AF via a first-order phase transition. For U smaller than U-AF the system is a correlated band insulator. Both methods show a clear evidence for a quantum transition to a half-metal (HM) phase just after the AFM order is turned on, followed by the formation of an AFM insulator on further increasing U. We show that the results obtained within both methods have good qualitative and quantitative consistency in the intermediate-to-strong-coupling regime at zero temperature as well as at finite temperature. On increasing the temperature, the AFM order is lost via a first-order phase transition at a transition temperature T-AF(U,Delta) or, equivalently, on decreasing U below U-AF(T,Delta)], within both methods, for weak to intermediate values of U/t. In the strongly correlated regime, where the effective low-energy Hamiltonian is the Heisenberg model, IPT is unable to capture the thermal (Neel) transition from the AFM phase to the paramagnetic phase, but the CTQMC does. At a finite temperature T, DMFT + CTQMC shows a second phase transition (not seen within DMFT + IPT) on increasing U beyond U-AF. At U-N > U-AF, when the Neel temperature T-N for the effective Heisenberg model becomes lower than T, the AFM order is lost via a second-order transition. For U >> Delta, T-N similar to t(2)/U(1 - x(2)), where x = 2 Delta/U and thus T-N increases with increase in Delta/U. In the three-dimensional parameter space of (U/t, T/t, and Delta/t), as T increases, the surface of first-order transition at U-AF(T,Delta) and that of the second-order transition at U-N(T,Delta) approach each other, shrinking the range over which the AFM order is stable. There is a line of tricritical points that separates the surfaces of first- and second-order phase transitions.

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An exact single-product factorisation of the molecular wave function for the timedependent Schrodinger equation is investigated by using an ansatz involving a phasefactor. By using the Frenkel variational method, we obtain the Schrodinger equations for the electronic and nuclear wave functions. The concept of a potential energy surface (PES) is retained by introducing a modified Hamiltonian as suggested earlier by Cederbaum. The parameter in the phase factor is chosen such that the equations of motion retain the physically appealing Born- Oppenheimer-like form, and is therefore unique.

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Entsprechend dem Rahmenkonzept für die Bundesforschungsanstalten im Geschäftsbereich des damaligen Bundesministeriums für Ernährung, Landwirtschaft und Forsten vom 12. 6. 1996 ist an der Bundesforschungsanstalt für Fischerei in Hamburg die Anzahl der Institute von fünf auf vier zu reduzieren. Das ab 1. 1. 2001 neu gebildete Institut für Fischereitechnik und Fischqualität (IFF) nimmt die Forschungsaufgaben der beiden bisherigen Institute für Fischereitechnik (IFH) sowie Biochemie und Technologie (IBT) wahr. Damit bietet sich für das aus zweivergleichsweise kleinen Instituten hervorgegangene IFF die Möglichkeit, in einem integrierten Ansatz Fische, Krebse und Weichtiere auf verschiedenen Stufen der Produktions- und Verarbeitungskette zu untersuchen und zu bewerten. Fangprozess und Folgebehandlung der Fangobjekte werden dadurch ganzheitlich betrachtet, was sich nicht zuletzt in Maßnahmen zur Qualitätserhaltung und -verbesserung von Fischen und Fischereierzeugnissen niederschlagen soll.

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In the first part I perform Hartree-Fock calculations to show that quantum dots (i.e., two-dimensional systems of up to twenty interacting electrons in an external parabolic potential) undergo a gradual transition to a spin-polarized Wigner crystal with increasing magnetic field strength. The phase diagram and ground state energies have been determined. I tried to improve the ground state of the Wigner crystal by introducing a Jastrow ansatz for the wave function and performing a variational Monte Carlo calculation. The existence of so called magic numbers was also investigated. Finally, I also calculated the heat capacity associated with the rotational degree of freedom of deformed many-body states and suggest an experimental method to detect Wigner crystals.

The second part of the thesis investigates infinite nuclear matter on a cubic lattice. The exact thermal formalism describes nucleons with a Hamiltonian that accommodates on-site and next-neighbor parts of the central, spin-exchange and isospin-exchange interaction. Using auxiliary field Monte Carlo methods, I show that energy and basic saturation properties of nuclear matter can be reproduced. A first order phase transition from an uncorrelated Fermi gas to a clustered system is observed by computing mechanical and thermodynamical quantities such as compressibility, heat capacity, entropy and grand potential. The structure of the clusters is investigated with the help two-body correlations. I compare symmetry energy and first sound velocities with literature and find reasonable agreement. I also calculate the energy of pure neutron matter and search for a similar phase transition, but the survey is restricted by the infamous Monte Carlo sign problem. Also, a regularization scheme to extract potential parameters from scattering lengths and effective ranges is investigated.

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Pulse-height and time-of-flight methods have been used to measure the electronic stopping cross sections for projectiles of 12C, 16O, 19F, 23Na, 24Mg, and 27Al, slowing in helium, neon, argon, krypton, and xenon. The ion energies were in the range 185 keV ≤ E ≤ 2560 keV.

A semiempirical calculation of the electronic stopping cross section for projectiles with atomic numbers between 6 and 13 passing through the inert gases has been performed using a modification of the Firsov model. Using Hartree-Slater-Fock orbitals, and summing over the losses for the individual charge states of the projectiles, good agreement has been obtained with the experimental data. The main features of the stopping cross section seen in the data, such as the Z1 oscillation and the variation of the velocity dependence on Z1 and Z2, are present in the calculation. The inclusion of a modified form of the Bethe-Bloch formula as an additional term allows the increase of the velocity dependence for projectile velocities above vo to be reproduced in the calculation.

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O fato de se enxergar a tarefa do direito penal na proteção de bens jurídicos contra a colocação em perigo e lesão destes, tornou-se quase uma unanimidade na teoria do direito penal. Objetivo deste trabalho é investigar se é possível, a partir da teoria de proteção a bens jurídicos, derivar um critério para limitar a intervenção jurídico-penal. De acordo com este estudo é impossível a partir desta teoria desenvolver um critério que esteja em condição de limitar o poder punitivo. Que isto é assim, deriva-se do fato de que a a teoria de proteção a bens jurídicos inaugura uma verdadeira função de maximização da eficiência da proteção. Esta função carrega, contudo, uma série de problemas. Em primeiro lugar, permite tanto a antecipação da punibilidade como também o recrudescimento da punição em nome de uma proteção mais efetiva. Esta circunstãncia ignora, contudo, o valor absoluto da pessoa humana. Em segundo lugar, há a problemática empírica da teoria de proteção a bens jurídicos. Com outras palavras: para ser eficiente, a proteção penal precisa de constante comprovação empírica. É, porém, eficiente esta proteção? Que isto não é o caso, a própria realidade do direito penal nos revela. Em terceiro lugar, a função de proteção exige a adoção de uma teoria preventiva da pena. Isto viola também o valor absoluto da pessoa humana. Em quarto lugar, a função de proteção não põe qualquer obstáculo à prerrogativa de valoração do legislador. Por fim, a função de proteção não fornece nenhuma base apodítica para respeitar a pessoa humana, porque ela se ocupa essencialmente de aspectos juspositivos e contingenciais. O presente trabalho oferece uma nova definição de bem jurídico que se funda na fenomenologia de Husserl, e tenta limitar o poder punitivo por meio do desenvolvimento de uma teoria da absolutidade do valor intrínseco da pessoa humana. De acordo com essas considerações, bem jurídico é a possibilidade da pessoa humana de actualizar vivências no mundo da vida na forma esquemática de uma relação intencional entre aquela pessoa e um objeto que é de valor para ela. De acordo com a concepção de Scheler, que aqui é adotada, a pessoa humana é justamente aquela unidade, que consiste em todas as distintas essências, de modo que a pessoa é a unidade concreta, e mesmo essencial, de atos de diferentes essências, que em si precede todas as diferenças essenciais de atos. Essencial á pessoa é ainda o poder-fazer como fato puramente fenomenal, que existe por meio do corpo. A pessoa tem sempre um valor positivo-absoluto, o que significa que ela jamais pode ser considerada como objeto.

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Qens/wins 2014 - 11th International Conference on Quasielastic Neutron Scattering and 6th International Workshop on Inelastic Neutron Spectrometers / editado por:Frick, B; Koza, MM; Boehm, M; Mutka, H

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We investigate solitary excitations in a model of a one-dimensional antiferromagnet including a single-ion anisotropy and a Dzyaloshinsky-Moriya antisymmetric exchange interaction term. We employ the Holstein-Primakoff transformation, the coherent state ansatz and the time variational principle. We obtain two partial differential equations of motion by using the method of multiple scales and applying perturbation theory. By so doing, we show that the motion of the coherent amplitude must satisfy the nonlinear Schrodinger equation. We give the single-soliton solution.

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We have investigated the equation of state (EOS) and single particle (s.p.) properties of asymmetric nuclear matter within the framework of the Brueckner-Bethe-Goldstone approach. We have discussed particularly the effect of microscopic three-body forces (TBF). It is shown that the TBF affects significantly the predicted properties of nuclear matter at high densities.

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The fully consistent relativistic continuum random phase approximation (RCRPA) has been constructed in the momentum representation in the first part of this paper. In this part we describe the numerical details for solving the Bethe-Salpeter equation. The numerical results are checked by the inverse energy weighted sum rules in the isoscalar giant monopole resonance, which are obtained from the constraint relativistic mean field theory and also calculated with the integration of the RCRPA strengths. Good agreement between the misachieved. We study the effects of the self-consistency violation, particularly the currents and Coulomb interaction to various collective multipole excitations. Using the fully consistent RCRPA method, we investigate the properties of isoscalar and isovector collective multipole excitations for some stable and exotic from light to heavy nuclei. The properties of the resonances, such as the centroid energies and strength distributions are compared with the experimental data as well as with results calculated in other models.

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In diesem Beitrag weisen wir auf die Bedeutung hin, die selbstorganisierte Projektgruppen von Studierenden für das (Aus-)Bildungsziel der überfachlichen Kompetenzentwicklung haben können. Nach einem kurzen Überblick über den aktuellen Stand der Förderung überfachlicher Kompetenzen an Hochschulen stellen wir am Beispiel des Augsburger „Begleitstudiums Problemlösekompetenz“ einen Ansatz zur Kompetenzentwicklung vor, der auf der Partizipation in studentischen Praxisgemeinschaften beruht. Wir erläutern vor diesem Hintergrund, wie sich selbstorganisierte Projektgruppen von Studierenden von anderen Gruppenformen im Rahmen von Lehrveranstaltungen unterscheiden, und machen anhand eines Beispiels deutlich, welchen Mehrwert diese Praxisgemeinschaften gegenüber anderen Ansätzen zur überfachlichen Kompetenzförderung an Hochschulen haben. (DIPF/ Orig.)

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Das im Folgenden skizzierte Projekt befasst sich mit Lernerautonomie als Konzept in der Musikdidaktik aus der Perspektive von Lehrenden. Es ist eingebettet in ein Forschungsprojekt an der Carl von Ossietzky Universität Oldenburg mit dem Titel „Lernerautonomie in der Musikdidaktik – eine empirische Studie“ unter der Leitung von Anja Rosenbrock. Etwa 20 Studierende haben im Jahr 2011 die Fähigkeit zum bzw. die Selbstevaluation des autonomen Lernens von Schülern im Musikunterricht an Gymnasien untersucht. [Das] Forschungsvorhaben stützt sich zwar auf die Untersuchung Rosenbrocks, fügt sich jedoch nicht vollkommen darin ein. Nicht Schüler, sondern Lehrer bilden hier die Untersuchungsgruppe. Sie fanden in der Autonomieforschung bisher nur wenig Beachtung. Dabei weisen jüngere Untersuchungen auf die große Bedeutung der Lehrer für die Entfaltung autonomen Handelns seitens der Schüler hin. In einem leitfadengestützten Interview wurden die theoretischen Kenntnisse von Lehrern über Lernerautonomie, ihre unterrichtspraktischen Erfahrungen mit dessen Förderung im eigenen Musikunterricht sowie die persönliche Einstellung gegenüber dem Ansatz erhoben. Zwei zentrale Fragestellungen bestimmten die Auseinandersetzung: 1. „Über welche Vorstellungen von Lernerautonomie verfügen die Lehrer?“ 2. „Wie positionieren sich die Lehrer gegenüber Lernerautonomie und womit begründen sie die jeweiligen Haltungen?“ Damit werden einerseits die Lehrpersonen, die in ihrem Unterricht Lernerautonomie anbahnen, in den Fokus der Betrachtung gerückt, andererseits aber auch die Lernenden, als innerhalb einer solchen Unterrichts‐ bzw. Lernform Agierende, erfasst. (DIPF/Orig.)

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The compression of a finite extent Gaussian laser pulse in collisional plasma is investigated. An analytical model is employed to describe the spatiotemporal evolution of a laser pulse propagating through the plasma medium. The pulse geometry is modeled via an appropriate ansatz which takes into account both beam radius (in space) and pulse width (in time). Compression and self-focusing are taken into account via appropriated group velocity dispersion and nonlinearity terms. The competition among the collisional nonlinearity in the plasma and the effect of divergence due to diffraction is pointed out and investigated numerically. Our results suggest that laser pulse compression and intensity localization is enhanced by plasma collisionality. In specific, a pulse width compression by an order of magnitude approximately is observed, for typical collisional laser plasma parameters, along with a significant increase in the intensity.