557 resultados para Bad Laer Z 1
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Os Thalassinidea são invertebrados marinhos de grande importância na ecologia de ambientes de fundos moles, especialmente dado sua influência nos fluxos de oxigênio, energia e nutrientes e, atividades bioturbadoras. Estes organismos vivem em galerias das quais dependem para diversas necessidades, como proteção, reprodução e alimentação. Em alguns lugares do mundo este grupo tem sido explorado para utilização como isca. A espécie Lepidophthalmus siriboia Felder & Rodrigues, 1993 (Crustacea: Callianassidae) ocorre desde a Flórida até o Brasil. Este estudo tem como objetivo avaliar a dinâmica e a estrutura populacional de L. siriboia na ilha de Maiandeua (PA), associando os processos observados com características ambientais ligadas ao sedimento e à água. As coletas ocorreram mensalmente entre junho de 2007 e maio de 2008, sendo os organismos capturados utilizando bomba de sucção. Em laboratório, os animais foram sexados, medidos e pesados. Nas fêmeas ovígeras foi contado o número de ovos aderidos aos pleópodos. O crescimento foi estimado através da equação de crescimento de Von Bertalanffy que estabelece a relação entre o comprimento total (CT) e a idade (t). Foi capturado um total de 1268 indivíduos (753 machos e 515 fêmeas), cujos comprimentos variaram de 0,3 a 1,85 cm e o peso de 0,01 a 3,09 g. Os comprimentos médios mensais das fêmeas foram significantemente maiores do que dos machos (p<0.05) em quase todos os meses do ano. O comprimento da carapaça e o comprimento do propódio para os machos tiveram alta e significante correlação, com crescimento alométrico positivo para ambos os sexos. O tamanho de primeira maturação obtido foi de 0,7 cm para as fêmeas e 0,6 cm para os machos. Os machos foram proporcionalmente mais abundantes, totalizando 59,4% de todos os organismos capturados (proporção sexual de 1,46 machos: 1 fêmea). Houve predomínio significativo de machos nas classes de comprimento entre 0,2 e 1,2 cm e de fêmeas nas classes de comprimento maior/igual a 1,2 cm. Foram registradas 139 fêmeas ovígeras, na qual a maioria (48,2% do total) ocorreu no intervalo de classe 1,1 a 1,2 cm de comprimento da carapaça. A fecundidade absoluta variou de 0 a 1546 ovos/fêmea, com valor médio de 826,25 ovos/fêmea. Observou-se correlação significativa entre o número de ovos, peso e comprimento da carapaça. As fêmeas tiveram crescimento maior que dos machos, sendo observados valores para machos de L_: 1,63 , K: 1, C: 0,2, WP: 0,18 e para fêmeas; L_: 1,68, K: 0,8, C: 0,2 e WP: 0,09. As estimativas de mortalidade dos machos foram maiores que para as fêmeas em todos os métodos utilizados: curva de captura (Z=1,67 e Z=0,11 para machos e fêmeas), Beverton e Holt (Z=1,9 e Z= 1,76 para machos e fêmeas) e Powell–Wetherall (Z/K=3,98 e Z/K= 2,25 para machos e fêmeas). Foram registrados três pulsos principais, sendo um pulso registrado em novembro, um em fevereiro e outro em maio. Os resultados obtidos permitem concluir: 1. comprimento médio dos machos é inferior ao das fêmeas ao longo do ano; 2. fêmeas são dominantes nas classes de comprimento superiores (_1,2 cm); 3. a reprodução é contínua com a ocorrência de fêmeas ovígeras ao longo do ano; 4. parâmetros de crescimento estimados foram maiores para as fêmeas do que para machos; 5. Fêmeas tiveram redução da taxa de crescimento em janeiro (WP: 0,09) e machos em fevereiro (WP: 0,18); 6. a mortalidade é maior para os machos; 7. Recrutamento ocorre ao longo do ano com três picos pronunciados em novembro, fevereiro e maio.
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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The method of steepest descent is used to study the integral kernel of a family of normal random matrix ensembles with eigenvalue distribution P-N (z(1), ... , z(N)) = Z(N)(-1)e(-N)Sigma(N)(i=1) V-alpha(z(i)) Pi(1 <= i<j <= N) vertical bar z(i) - z(j)vertical bar(2), where V-alpha(z) = vertical bar z vertical bar(alpha), z epsilon C and alpha epsilon inverted left perpendicular0, infinity inverted right perpendicular. Asymptotic formulas with error estimate on sectors are obtained. A corollary of these expansions is a scaling limit for the n-point function in terms of the integral kernel for the classical Segal-Bargmann space. (C) 2012 American Institute of Physics. [http://dx.doi.org/10.1063/1.3688293]
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Context. The angular diameter distances toward galaxy clusters can be determined with measurements of Sunyaev-Zel'dovich effect and X-ray surface brightness combined with the validity of the distance-duality relation, D-L(z)(1 + z)(2)/D-A(z) = 1, where D-L(z) and D-A(z) are, respectively, the luminosity and angular diameter distances. This combination enables us to probe galaxy cluster physics or even to test the validity of the distance-duality relation itself. Aims. We explore these possibilities based on two different, but complementary approaches. Firstly, in order to constrain the possible galaxy cluster morphologies, the validity of the distance-duality relation (DD relation) is assumed in the Lambda CDM framework (WMAP7). Secondly, by adopting a cosmological-model-independent test, we directly confront the angular diameters from galaxy clusters with two supernovae Ia (SNe Ia) subsamples (carefully chosen to coincide with the cluster positions). The influence of the different SNe Ia light-curve fitters in the previous analysis are also discussed. Methods. We assumed that eta is a function of the redshift parametrized by two different relations: eta(z) = 1 +eta(0)z, and eta(z) = 1 + eta(0)z/(1 + z), where eta(0) is a constant parameter quantifying the possible departure from the strict validity of the DD relation. In order to determine the probability density function (PDF) of eta(0), we considered the angular diameter distances from galaxy clusters recently studied by two different groups by assuming elliptical and spherical isothermal beta models and spherical non-isothermal beta model. The strict validity of the DD relation will occur only if the maximum value of eta(0) PDF is centered on eta(0) = 0. Results. For both approaches we find that the elliptical beta model agrees with the distance-duality relation, whereas the non-isothermal spherical description is, in the best scenario, only marginally compatible. We find that the two-light curve fitters (SALT2 and MLCS2K2) present a statistically significant conflict, and a joint analysis involving the different approaches suggests that clusters are endowed with an elliptical geometry as previously assumed. Conclusions. The statistical analysis presented here provides new evidence that the true geometry of clusters is elliptical. In principle, it is remarkable that a local property such as the geometry of galaxy clusters might be constrained by a global argument like the one provided by the cosmological distance-duality relation.
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We prove that any continuous function with domain {z ∈ C: |z| ≤ 1} that generates a bizonal positive definite kernel on the unit sphere in 'C POT.Q' , q ⩾ 3, is continuously differentiable in {z ∈ C: |z| < 1} up to order q − 2, with respect to both z and 'Z BARRA'. In particular, the partial derivatives of the function with respect to x = Re z and y = Im z exist and are continuous in {z ∈ C: |z| < 1} up to the same order.
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In this Thesis, we investigate the cosmological co-evolution of supermassive black holes (BHs), Active Galactic Nuclei (AGN) and their hosting dark matter (DM) halos and galaxies, within the standard CDM scenario. We analyze both analytic, semi-analytic and hybrid techniques and use the most recent observational data available to constrain the assumptions underlying our models. First, we focus on very simple analytic models where the assembly of BHs is directly related to the merger history of DM haloes. For this purpose, we implement the two original analytic models of Wyithe & Loeb 2002 and Wyithe & Loeb 2003, compare their predictions to the AGN luminosity function and clustering data, and discuss possible modifications to the models that improve the match to the observation. Then we study more sophisticated semi-analytic models in which however the baryonic physics is neglected as well. Finally we improve the hybrid simulation of De Lucia & Blaizot 2007, adding new semi-analytical prescriptions to describe the BH mass accretion rate during each merger event and its conversion into radiation, and compare the derived BH scaling relations, fundamental plane and mass function, and the AGN luminosity function with observations. All our results support the following scenario: • The cosmological co-evolution of BHs, AGN and galaxies can be well described within the CDM model. • At redshifts z & 1, the evolution history of DM halo fully determines the overall properties of the BH and AGN populations. The AGN emission is triggered mainly by DM halo major mergers and, on average, AGN shine at their Eddington luminosity. • At redshifts z . 1, BH growth decouples from halo growth. Galaxy major mergers cannot constitute the only trigger to accretion episodes in this phase. • When a static hot halo has formed around a galaxy, a fraction of the hot gas continuously accretes onto the central BH, causing a low-energy “radio” activity at the galactic centre, which prevents significant gas cooling and thus limiting the mass of the central galaxies and quenching the star formation at late time. • The cold gas fraction accreted by BHs at high redshifts seems to be larger than at low redshifts.
Untersuchungen am Drei-Eichbosonen-Vertex der elektroschwachen Wechselwirkung mit dem ALEPH-Detektor
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In der vorliegenden Arbeit werden vom ALEPH-Detektor am Speicherring LEP des CERN in Genf genommene Datenmengen aus den Jahren 1997 bis 1999 analysiert und sowohl Kopplungsparameter am Drei-Eichbosonen-Vertex derW-Boson-Paarproduktion, als auch die Anteile longitudinal beziehungsweise transversal polarisierter W-Bosonen, bei Schwerpunktsenergien von 183 GeV bis 202 GeV bestimmt. Betrachtet wird der rein leptonische Zerfallskanal, in dembeide W-Bosonen in ein Elektron-Neutrino- oder ein Myon-Neutrino-Paar zerfallen, der einen geringen Wirkungsquerschnitt aufweist, aber eine klareDetektorsignatur. Die aufgezeichneten Ereignisse werden selektiert und dabei eine Reinheit von durchschnittlich 72% erreicht. Der Hauptuntergrund besteht aus W-Boson-Paaren, bei denen zumindest ein W-Boson in ein Tauon-Neutrino-Paarzerfällt. Dieser Kanal zeigt ein sehr signalähnliches Verhalten. Die selektierten Ereignisse werden kinematisch rekonstruiert, um die Winkelverteilungen der Zerfallsprodukte der W-Bosonen zu extrahieren. Aus den Polarwinkelverteilungen der geladenen Zerfallsprodukte der W-Bosonen werden die Anteile longitudinal beziehungsweise transversal polarisierterW-Bosonen durch Anpassung der theoretischen Vorhersage an die selektierten Daten bestimmt. Dabei wird gefunden, daß f? = (71,6 ? 6,4_{stat.} ? 3,7_{syst.}) % der produzierten W-Bosonen transversal polarisiert sind, in Übereinstimmung mit der Vorhersage des Standardmodells (75,1%). Dieser Wert ist ein erster Hinweis auf die Kopplungsparameter am Drei-Eichbosonen-Vertex. Die CP-erhaltenden allgemeinen Kopplungsparameter $g_{rm Z}^1$, $kappa_gamma$ und $lambda_gamma$ werden bestimmt zu: $g_{rm Z}^1 = {{1,19^{+0,13}_{-0,16}}_{stat.}} {^{+0,09}_{-0,09}}_{syst.}$,$kappa_gamma = {{1,06^{+0,27}_{-0,09}}_{stat.}} {^{+0,08}_{-0,08}}_{syst.}$,$lambda_gamma = {{0,16^{+0,11}_{-0,13}}_{stat.}} {^{+0,08}_{-0,08}}_{syst.}$. Das Standardmodell sagt $g_{rm Z}^1 = 1$, $kappa_gamma = 1$ und $lambda_gamma = 0$ voraus. Mit diesen Kopplungsparametern lassen sich das magnetischeDipolmoment und das elektrische Quadrupolmoment der W-Bosonen bestimmen zu: $mu_{rm W} = frac{e}{2m_{rm W}} cdot (2,22^{+0,31}_{-0,19})$,$q_{rm W} = - frac{e}{m_{rm W}^2} cdot (0,90^{+0,32}_{-0,18})$. Die Messung der Kopplungsparameter stellt einen wichtigen Test des minimalen Standardmodells dar. In einem Jahr wird es möglich sein, diesen Test mit allen Daten aus der Phase II des Betriebs von LEP durchzuführen und die Genauigkeit durch Kombination mit anderen LEP-Experimenten zu erhöhen.
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The goal of this thesis is to analyze the possibility of using early-type galaxies to place evolutionary and cosmological constraints, by both disentangling what is the main driver of ETGs evolution between mass and environment, and developing a technique to constrain H(z) and the cosmological parameters studying the ETGs age-redshift relation. The (U-V) rest-frame color distribution is studied as a function of mass and environment for two sample of ETGs up to z=1, extracted from the zCOSMOS survey with a new selection criterion. The color distributions and the slopes of the color-mass and color-environment relations are studied, finding a strong dependence on mass and a minor dependence on environment. The spectral analysis performed on the D4000 and Hδ features gives results validating the previous analysis. The main driver of galaxy evolution is found to be the galaxy mass, the environment playing a subdominant but non negligible role. The age distribution of ETGs is also analyzed as a function of mass, providing strong evidences supporting a downsizing scenario. The possibility of setting cosmological constraints studying the age-redshift relation is studied, discussing the relative degeneracies and model dependencies. A new approach is developed, aiming to minimize the impact of systematics on the “cosmic chronometer” method. Analyzing theoretical models, it is demonstrated that the D4000 is a feature correlated almost linearly with age at fixed metallicity, depending only minorly on the models assumed or on the SFH chosen. The analysis of a SDSS sample of ETGs shows that it is possible to use the differential D4000 evolution of the galaxies to set constraints to cosmological parameters in an almost model-independent way. Values of the Hubble constant and of the dark energy EoS parameter are found, which are not only fully compatible, but also with a comparable error budget with the latest results.
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In this thesis, I have investigated the evolution of the high-redshift (z > 3) AGN population by collecting data from some of the major Chandra and XMM-Newton surveys. The final sample (141 sources) is one of the largest selected at z> 3 in the X- rays and it is characterised by a very high redshift completeness (98%). I derived the spectral slopes and obscurations through a spectral anaysis and I assessed the high-z evolution by deriving the luminosity function and the number counts of the sample. The best representation of the AGN evolution is a pure density evolution (PDE) model: the AGN space density is found to decrease by a factor of 10 from z=3 to z=5. I also found that about 50% of AGN are obscured by large column densities (logNH > 23). By comparing these data with those in the Local Universe, I found a positive evolution of the obscured AGN fraction with redshift, especially for luminous (logLx > 44) AGN. I also studied the gas content of z < 1 AGN-hosting galaxies and compared it with that of inactive galaxies. For the first time, I applied to AGN a method to derive the gas mass previously used for inactive galaxies only. AGN are found to live preferentially in gas-rich galaxies. This result on the one hand can help us in understanding the AGN triggering mechanisms, on the other hand explains why AGN are preferentially hosted by star-forming galaxies.
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The upgrade of the Mainz Mikrotron (MAMI) electron accelerator facility in 2007 which raised the beam energy up to 1.5,GeV, gives the opportunity to study strangeness production channels through electromagnetic process. The Kaon Spectrometer (KAOS) managed by the A1 Collaboration, enables the efficient detection of the kaons associated with strangeness electroproduction. Used as a single arm spectrometer, it can be combined with the existing high-resolution spectrometers for exclusive measurements in the kinematic domain accessible to them.rnrnFor studying hypernuclear production in the ^A Z(e,e'K^+) _Lambda ^A(Z-1) reaction, the detection of electrons at very forward angles is needed. Therefore, the use of KAOS as a double-arm spectrometer for detection of kaons and the electrons at the same time is mandatory. Thus, the electron arm should be provided with a new detector package, with high counting rate capability and high granularity for a good spatial resolution. To this end, a new state-of-the-art scintillating fiber hodoscope has been developed as an electron detector.rnrnThe hodoscope is made of two planes with a total of 18432 scintillating double-clad fibers of 0.83 mm diameter. Each plane is formed by 72 modules. Each module is formed from a 60deg slanted multi-layer bundle, where 4 fibers of a tilted column are connected to a common read out. The read-out is made with 32 channels of linear array multianode photomultipliers. Signal processing makes use of newly developed double-threshold discriminators. The discriminated signal is sent in parallel to dead-time free time-to-digital modules and to logic modules for triggering purposes.rnrnTwo fiber modules were tested with a carbon beam at GSI, showing a time resolution of 220 ps (FWHM) and a position residual of 270 microm m (FWHM) with a detection efficiency epsilon>99%.rnrnThe characterization of the spectrometer arm has been achieved through simulations calculating the transfer matrix of track parameters from the fiber detector focal plane to the primary vertex. This transfer matrix has been calculated to first order using beam transport optics and has been checked by quasielastic scattering off a carbon target, where the full kinematics is determined by measuring the recoil proton momentum. The reconstruction accuracy for the emission parameters at the quasielastic vertex was found to be on the order of 0.3 % in first test realized.rnrnThe design, construction process, commissioning, testing and characterization of the fiber hodoscope are presented in this work which has been developed at the Institut für Kernphysik of the Johannes Gutenberg - Universität Mainz.
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Holding the major share of stellar mass in galaxies and being also old and passively evolving, early-type galaxies (ETGs) are the primary probes in investigating these various evolution scenarios, as well as being useful means to provide insights on cosmological parameters. In this thesis work I focused specifically on ETGs and on their capability in constraining galaxy formation and evolution; in particular, the principal aims were to derive some of the ETGs evolutionary parameters, such as age, metallicity and star formation history (SFH) and to study their age-redshift and mass-age relations. In order to infer galaxy physical parameters, I used the public code STARLIGHT: this program provides a best fit to the observed spectrum from a combination of many theoretical models defined in user-made libraries. the comparison between the output and input light-weighted ages shows a good agreement starting from SNRs of ∼ 10, with a bias of ∼ 2.2% and a dispersion 3%. Furthermore, also metallicities and SFHs are well reproduced. In the second part of the thesis I performed an analysis on real data, starting from Sloan Digital Sky Survey (SDSS) spectra. I found that galaxies get older with cosmic time and with increasing mass (for a fixed redshift bin); absolute light-weighted ages, instead, result independent from the fitting parameters or the synthetic models used. Metallicities, instead, are very similar from each other and clearly consistent with the ones derived from the Lick indices. The predicted SFH indicates the presence of a double burst of star formation. Velocity dispersions and extinctiona are also well constrained, following the expected behaviours. As a further step, I also fitted single SDSS spectra (with SNR∼ 20), to verify that stacked spectra gave the same results without introducing any bias: this is an important check, if one wants to apply the method at higher z, where stacked spectra are necessary to increase the SNR. Our upcoming aim is to adopt this approach also on galaxy spectra obtained from higher redshift Surveys, such as BOSS (z ∼ 0.5), zCOSMOS (z 1), K20 (z ∼ 1), GMASS (z ∼ 1.5) and, eventually, Euclid (z 2). Indeed, I am currently carrying on a preliminary study to estabilish the applicability of the method to lower resolution, as well as higher redshift (z 2) spectra, just like the Euclid ones.
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The first part of this work deals with the inverse problem solution in the X-ray spectroscopy field. An original strategy to solve the inverse problem by using the maximum entropy principle is illustrated. It is built the code UMESTRAT, to apply the described strategy in a semiautomatic way. The application of UMESTRAT is shown with a computational example. The second part of this work deals with the improvement of the X-ray Boltzmann model, by studying two radiative interactions neglected in the current photon models. Firstly it is studied the characteristic line emission due to Compton ionization. It is developed a strategy that allows the evaluation of this contribution for the shells K, L and M of all elements with Z from 11 to 92. It is evaluated the single shell Compton/photoelectric ratio as a function of the primary photon energy. It is derived the energy values at which the Compton interaction becomes the prevailing process to produce ionization for the considered shells. Finally it is introduced a new kernel for the XRF from Compton ionization. In a second place it is characterized the bremsstrahlung radiative contribution due the secondary electrons. The bremsstrahlung radiation is characterized in terms of space, angle and energy, for all elements whit Z=1-92 in the energy range 1–150 keV by using the Monte Carlo code PENELOPE. It is demonstrated that bremsstrahlung radiative contribution can be well approximated with an isotropic point photon source. It is created a data library comprising the energetic distributions of bremsstrahlung. It is developed a new bremsstrahlung kernel which allows the introduction of this contribution in the modified Boltzmann equation. An example of application to the simulation of a synchrotron experiment is shown.