9 resultados para fractional derivative of variable order
em Universitätsbibliothek Kassel, Universität Kassel, Germany
Resumo:
Mesh generation is an important step inmany numerical methods.We present the “HierarchicalGraphMeshing” (HGM)method as a novel approach to mesh generation, based on algebraic graph theory.The HGM method can be used to systematically construct configurations exhibiting multiple hierarchies and complex symmetry characteristics. The hierarchical description of structures provided by the HGM method can be exploited to increase the efficiency of multiscale and multigrid methods. In this paper, the HGMmethod is employed for the systematic construction of super carbon nanotubes of arbitrary order, which present a pertinent example of structurally and geometrically complex, yet highly regular, structures. The HGMalgorithm is computationally efficient and exhibits good scaling characteristics. In particular, it scales linearly for super carbon nanotube structures and is working much faster than geometry-based methods employing neighborhood search algorithms. Its modular character makes it conducive to automatization. For the generation of a mesh, the information about the geometry of the structure in a given configuration is added in a way that relates geometric symmetries to structural symmetries. The intrinsically hierarchic description of the resulting mesh greatly reduces the effort of determining mesh hierarchies for multigrid and multiscale applications and helps to exploit symmetry-related methods in the mechanical analysis of complex structures.
Resumo:
In natural languages with a high degree of word-order freedom syntactic phenomena like dependencies (subordinations) or valencies do not depend on the word-order (or on the individual positions of the individual words). This means that some permutations of sentences of these languages are in some (important) sense syntactically equivalent. Here we study this phenomenon in a formal way. Various types of j-monotonicity for restarting automata can serve as parameters for the degree of word-order freedom and for the complexity of word-order in sentences (languages). Here we combine two types of parameters on computations of restarting automata: 1. the degree of j-monotonicity, and 2. the number of rewrites per cycle. We study these notions formally in order to obtain an adequate tool for modelling and comparing formal descriptions of (natural) languages with different degrees of word-order freedom and word-order complexity.
Resumo:
The structural, electronic and magnetic properties of one-dimensional 3d transition-metal (TM) monoatomic chains having linear, zigzag and ladder geometries are investigated in the frame-work of first-principles density-functional theory. The stability of long-range magnetic order along the nanowires is determined by computing the corresponding frozen-magnon dispersion relations as a function of the 'spin-wave' vector q. First, we show that the ground-state magnetic orders of V, Mn and Fe linear chains at the equilibrium interatomic distances are non-collinear (NC) spin-density waves (SDWs) with characteristic equilibrium wave vectors q that depend on the composition and interatomic distance. The electronic and magnetic properties of these novel spin-spiral structures are discussed from a local perspective by analyzing the spin-polarized electronic densities of states, the local magnetic moments and the spin-density distributions for representative values q. Second, we investigate the stability of NC spin arrangements in Fe zigzag chains and ladders. We find that the non-collinear SDWs are remarkably stable in the biatomic chains (square ladder), whereas ferromagnetic order (q =0) dominates in zigzag chains (triangular ladders). The different magnetic structures are interpreted in terms of the corresponding effective exchange interactions J(ij) between the local magnetic moments μ(i) and μ(j) at atoms i and j. The effective couplings are derived by fitting a classical Heisenberg model to the ab initio magnon dispersion relations. In addition they are analyzed in the framework of general magnetic phase diagrams having arbitrary first, second, and third nearest-neighbor (NN) interactions J(ij). The effect of external electric fields (EFs) on the stability of NC magnetic order has been quantified for representative monoatomic free-standing and deposited chains. We find that an external EF, which is applied perpendicular to the chains, favors non-collinear order in V chains, whereas it stabilizes the ferromagnetic (FM) order in Fe chains. Moreover, our calculations reveal a change in the magnetic order of V chains deposited on the Cu(110) surface in the presence of external EFs. In this case the NC spiral order, which was unstable in the absence of EF, becomes the most favorable one when perpendicular fields of the order of 0.1 V/Å are applied. As a final application of the theory we study the magnetic interactions within monoatomic TM chains deposited on graphene sheets. One observes that even weak chain substrate hybridizations can modify the magnetic order. Mn and Fe chains show incommensurable NC spin configurations. Remarkably, V chains show a transition from a spiral magnetic order in the freestanding geometry to FM order when they are deposited on a graphene sheet. Some TM-terminated zigzag graphene-nanoribbons, for example V and Fe terminated nanoribbons, also show NC spin configurations. Finally, the magnetic anisotropy energies (MAEs) of TM chains on graphene are investigated. It is shown that Co and Fe chains exhibit significant MAEs and orbital magnetic moments with in-plane easy magnetization axis. The remarkable changes in the magnetic properties of chains on graphene are correlated to charge transfers from the TMs to NN carbon atoms. Goals and limitations of this study and the resulting perspectives of future investigations are discussed.
Resumo:
We show that the locally free class group of an order in a semisimple algebra over a number field is isomorphic to a certain ray class group. This description is then used to present an algorithm that computes the locally free class group. The algorithm is implemented in MAGMA for the case where the algebra is a group ring over the rational numbers.
Resumo:
A fully numerical two-dimensional solution of the Schrödinger equation is presented for the linear polyatomic molecule H^2+_3 using the finite element method (FEM). The Coulomb singularities at the nuclei are rectified by using both a condensed element distribution around the singularities and special elements. The accuracy of the results for the 1\sigma and 2\sigma orbitals is of the order of 10^-7 au.
Resumo:
At present, a fraction of 0.1 - 0.2% of the patients undergoing surgery become aware during the process. The situation is referred to as anesthesia awareness and is obviously very traumatic for the person experiencing it. The reason for its occurrence is mostly an insufficient dosage of the narcotic Propofol combined with the incapability of the technology monitoring the depth of the patient’s anesthetic state to notice the patient becoming aware. A solution can be a highly sensitive and selective real time monitoring device for Propofol based on optical absorption spectroscopy. Its working principle has been postulated by Prof. Dr. habil. H. Hillmer and formulated in DE10 2004 037 519 B4, filed on Aug 30th, 2004. It consists of the exploitation of Intra Cavity Absorption effects in a two mode laser system. In this Dissertation, a two mode external cavity semiconductor laser, which has been developed previously to this work is enhanced and optimized to a functional sensor. Enhancements include the implementation of variable couplers into the system and the implementation of a collimator arrangement into which samples can be introduced. A sample holder and cells are developed and characterized with a focus on compatibility with the measurement approach. Further optimization concerns the overall performance of the system: scattering sources are reduced by re-splicing all fiber-to-fiber connections, parasitic cavities are eliminated by suppressing the Fresnel reflexes of all one fiber ends by means of optical isolators and wavelength stability of the system is improved by the implementation of thermal insulation to the Fiber Bragg Gratings (FBG). The final laser sensor is characterized in detail thermally and optically. Two separate modes are obtained at 1542.0 and 1542.5 nm, tunable in a range of 1nm each. Mode Full Width at Half Maximum (FWHM) is 0.06nm and Signal to Noise Ratio (SNR) is as high as 55 dB. Independent of tuning the two modes of the system can always be equalized in intensity, which is important as the delicacy of the intensity equilibrium is one of the main sensitivity enhancing effects formulated in DE10 2004 037 519 B4. For the proof of concept (POC) measurements the target substance Propofol is diluted in the solvents Acetone and DiChloroMethane (DCM), which have been investigated for compatibility with Propofol beforehand. Eight measurement series (two solvents, two cell lengths and two different mode spacings) are taken, which draw a uniform picture: mode intensity ratio responds linearly to an increase of Propofol in all cases. The slope of the linear response indicates the sensitivity of the system. The eight series are split up into two groups: measurements taken in long cells and measurements taken in short cells.
Resumo:
This thesis concerns with the main aspects of medical trace molecules detection by means of intracavity laser absorption spectroscopy (ICLAS), namely with the equirements for highly sensitive, highly selective, low price, and compact size sensor. A novel two modes semiconductor laser sensor is demonstrated. Its operation principle is based on the competition between these two modes. The sensor sensitivity is improved when the sample is placed inside the two modes laser cavity, and the competition between the two modes exists. The effects of the mode competition in ICLAS are discussed theoretically and experimentally. The sensor selectivity is enhanced using external cavity diode laser (ECDL) configuration, where the tuning range only depends on the external cavity configuration. In order to considerably reduce the sensor cost, relative intensity noise (RIN) is chosen for monitoring the intensity ratio of the two modes. RIN is found to be an excellent indicator for the two modes intensity ratio variations which strongly supports the sensor methodology. On the other hand, it has been found that, wavelength tuning has no effect on the RIN spectrum which is very beneficial for the proposed detection principle. In order to use the sensor for medical applications, the absorption line of an anesthetic sample, propofol, is measured. Propofol has been dissolved in various solvents. RIN has been chosen to monitor the sensor response. From the measured spectra, the sensor sensitivity enhancement factor is found to be of the order of 10^(3) times of the conventional laser spectroscopy.
Resumo:
Im Mittelpunkt der Arbeit steht die Frage, ob bei psychogenen Störungen Geschwistererfahrungen klinische Relevanz haben und ob die erfahrene Geschwisterposition und –konstellation auch im Erwachsenenalter psychodynamisch wirksam ist. Die Arbeit gliedert sich in drei Teile. Im ersten Teil werden in einem metatheoretischen Vorgehen psychoanalytische Konzepte, psychoanalytische Entwicklungstheorien aus der Objekt- und Selbstpsychologie und empirische Forschungsergebnisse zur Geschwisterbeziehung vorgestellt. Darauf aufbauend werden Annahmen formuliert, welche psychodynamischen Konflikte sich in einer pathologischen Entwicklung als psychische Störungen im Erwachsenenalter manifestieren können.Im zweiten Teil der Arbeit werden acht Einzelfälle psychoanalytischer Behandlungen von erwachsenen Patienten unterschiedlicher Geschwisterpositionen und -konstellationen dargestellt, die die in Teil 1 beschriebenen pathogenen Geschwistereinflüsse illustrieren. In den untersuchten Einzelfällen ist die erfahrene Geschwisterposition der Patienten konfliktbesetzt und psychodynamisch wirksam gewesen. Dabei haben die Erfahrungen mit den primären Objekten die Basis für die pathologische Beziehungsdynamik der Geschwister gebildet. Den dritten extra-klinisch empirischen Teil der Arbeit stellt eine explorative Pilotstudie dar, die ebenfalls das Ziel verfolgt, persistierende Geschwisterkonflikte in ihren langandauernden Effekten zu explorieren. Es handelt sich um eine Dokumentenanalyse von 215 Patientenakten aus einer psychosomatischen Klinik. Aus den Akten werden als Variablen ICD - und OPD - Diagnosen als auch inhaltsanalytisch ermittelte psychodynamische Konflikte herausgefiltert und mit den Variablen Geschwisterposition und –konstellation korreliert. Dabei wird erstens der Frage nachgegangen, ob es in den Akten von psychisch erkrankten Patienten zwischen Einzel- und Geschwisterkindern Unterschiede in Bezug auf die Diagnosen und hinsichtlich der formulierten psychodynamischen Konflikte gibt. Zweitens geht es um eine weitergehende Exploration dieser Variablen in Bezug auf die erfahrene Geschwisterposition bzw. –konstellation. Es zeigt sich, dass die ICD-10 Diagnostik aufgrund ihres deskriptiven Charakters und ihrer psychiatrischen Orientierung wenig brauchbar ist, diesbezügliche Hypothesen zu formulieren. Im Unterschied zur ICD-10 ergibt sich in Bezug auf die OPD-Diagnostik, besonders aber in Hinsicht auf die psychodynamischen Konflikte ein differenzierteres Bild. So sind z.B. Parentifizierung am häufigsten von Einzelkindern und Erstgeborenen benannt worden. Gleichzeitig berichten Patienten, die mit Geschwistern aufgewachsen sind, am stärksten von erlebtem emotionalem Mangel in der Familie. Unter Dominanzkonflikten leiden die Patienten am meisten, die als jüngstes Kind aufgewachsen sind. Bei Patienten mit der jüngsten und mittleren Geschwisterposition ist als weiteres Beispiel auffallend oft Altruismus ermittelt worden. Fazit der Arbeit ist, dass ungelöste Geschwisterkonflikte langandauernde Effekte haben können und dass - im Gegensatz zur Birth-Order-Forschung - die Variable der Geschwisterposition unter Berücksichtigung geschlechtsspezifischer Aspekte als ein intra- und interpsychisches dynamisches Geschehen begriffen werden kann.