998 resultados para ddc:530


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Studies of non-equilibrium current fluctuations enable assessing correlations involved in quantum transport through nanoscale conductors. They provide additional information to the mean current on charge statistics and the presence of coherence, dissipation, disorder, or entanglement. Shot noise, being a temporal integral of the current autocorrelation function, reveals dynamical information. In particular, it detects presence of non-Markovian dynamics, i.e., memory, within open systems, which has been subject of many current theoretical studies. We report on low-temperature shot noise measurements of electronic transport through InAs quantum dots in the Fermi-edge singularity regime and show that it exhibits strong memory effects caused by quantum correlations between the dot and fermionic reservoirs. Our work, apart from addressing noise in archetypical strongly correlated system of prime interest, discloses generic quantum dynamical mechanism occurring at interacting resonant Fermi edges.

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The impact of Chernobyl on the 137Cs activities found in wild boars in Europe, even in remote locations from the NPP, has been much greater than the impact of Fukushima on boars in Japan. Although there is great variability within the 137Cs concentrations throughout the wild boar populations, some boars in southern Germany in recent years exhibit higher activity concentrations (up to 10,000 Bq/kg and higher) than the highest 137Cs levels found in boars in the governmental food monitoring campaign (7900 Bq/kg) in Fukushima prefecture in Japan. The levels of radiocesium in boar appear to be more persistent than would be indicated by the constantly decreasing 137Cs inventory observed in the soil which points to a food source that is highly retentive to 137Cs contamination or to other radioecological anomalies that are not yet fully understood.

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We investigated Ocean sediments and seawater from inside the Fukushima exclusion zone and found radiocesium (134Cs and 137Cs) up to 800 Bq kg-1 as well as 90Sr up to 5.6 Bq kg-1. This is one of the first reports on radiostrontium in sea sediments from the Fukushima exclusion zone. Seawater exhibited contamination levels up to 5.3 Bq kg-1 radiocesium. Tap water from Tokyo from weeks after the accident exhibited detectable but harmless activities of radiocesium (well below the regulatory limit). Analysis of the Unit 5 reactor coolant (finding only 3H and even low 129I) leads to the conclusion that the purification techniques for reactor coolant employed at Fukushima Daiichi are very effective.

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The electronic properties of bilayer graphene strongly depend on relative orientation of the two atomic lattices. Whereas Bernal-stacked graphene is most commonly studied, a rotational mismatch between layers opens up a whole new field of rich physics, especially at small interlayer twist. Here we report on magnetotransport measurements on twisted graphene bilayers, prepared by folding of single layers. These reveal a strong dependence on the twist angle, which can be estimated by means of sample geometry. At small rotation, superlattices with a wavelength in the order of 10 nm arise and are observed by friction atomic force microscopy. Magnetotransport measurements in this small-angle regime show the formation of satellite Landau fans. These are attributed to additional Dirac singularities in the band structure and discussed with respect to the wide range of interlayer coupling models.

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In 1935, Einstein, Podolsky and Rosen (EPR) questioned the completeness of quantum mechanics by devising a quantum state of two massive particles with maximally correlated space and momentum coordinates. The EPR criterion qualifies such continuous-variable entangled states, where a measurement of one subsystem seemingly allows for a prediction of the second subsystem beyond the Heisenberg uncertainty relation. Up to now, continuous-variable EPR correlations have only been created with photons, while the demonstration of such strongly correlated states with massive particles is still outstanding. Here we report on the creation of an EPR-correlated two-mode squeezed state in an ultracold atomic ensemble. The state shows an EPR entanglement parameter of 0.18(3), which is 2.4 s.d. below the threshold 1/4 of the EPR criterion. We also present a full tomographic reconstruction of the underlying many-particle quantum state. The state presents a resource for tests of quantum nonlocality and a wide variety of applications in the field of continuous-variable quantum information and metrology.

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Entanglement distribution between distant parties is an essential component to most quantum communication protocols. Unfortunately, decoherence effects such as phase noise in optical fibres are known to demolish entanglement. Iterative (multistep) entanglement distillation protocols have long been proposed to overcome decoherence, but their probabilistic nature makes them inefficient since the success probability decays exponentially with the number of steps. Quantum memories have been contemplated to make entanglement distillation practical, but suitable quantum memories are not realised to date. Here, we present the theory for an efficient iterative entanglement distillation protocol without quantum memories and provide a proof-of-principle experimental demonstration. The scheme is applied to phase-diffused two-mode-squeezed states and proven to distil entanglement for up to three iteration steps. The data are indistinguishable from those that an efficient scheme using quantum memories would produce. Since our protocol includes the final measurement it is particularly promising for enhancing continuous-variable quantum key distribution.

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Published pre-Fukushima food monitoring data from 1963 to 1995 were used to study the long-term presence of 137Cs and 90Sr in rice and wheat. Effective half-lives (T eff) were calculated for rice (137Cs: 5.6 years; 90Sr: 6.7 years) and wheat (137Cs: 3.5 years; 90Sr: 6.2 years), respectively. In rice, 137Cs exhibits a longer T eff because putrefaction processes will lead to the formation of NH4 + ions that are efficient ion exchangers for mineral-adsorbed cesium ions, hence making it more readily available to the plant. Knowledge on the long-term behavior of radiocesium and radiostrontium will be important for Japanese food-safety campaigns after the Fukushima nuclear accident.

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Secret communication over public channels is one of the central pillars of a modern information society. Using quantum key distribution this is achieved without relying on the hardness of mathematical problems, which might be compromised by improved algorithms or by future quantum computers. State-of-the-art quantum key distribution requires composable security against coherent attacks for a finite number of distributed quantum states as well as robustness against implementation side channels. Here we present an implementation of continuous-variable quantum key distribution satisfying these requirements. Our implementation is based on the distribution of continuous-variable Einstein–Podolsky–Rosen entangled light. It is one-sided device independent, which means the security of the generated key is independent of any memoryfree attacks on the remote detector. Since continuous-variable encoding is compatible with conventional optical communication technology, our work is a step towards practical implementations of quantum key distribution with state-of-the-art security based solely on telecom components.

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Finding equilibration times is a major unsolved problem in physics with few analytical results. Here we look at equilibration times for quantum gases of bosons and fermions in the regime of negligibly weak interactions, a setting which not only includes paradigmatic systems such as gases confined to boxes, but also Luttinger liquids and the free superfluid Hubbard model. To do this, we focus on two classes of measurements: (i) coarse-grained observables, such as the number of particles in a region of space, and (ii) few-mode measurements, such as phase correlators.Weshow that, in this setting, equilibration occurs quite generally despite the fact that the particles are not interacting. Furthermore, for coarse-grained measurements the timescale is generally at most polynomial in the number of particles N, which is much faster than previous general upper bounds, which were exponential in N. For local measurements on lattice systems, the timescale is typically linear in the number of lattice sites. In fact, for one-dimensional lattices, the scaling is generally linear in the length of the lattice, which is optimal. Additionally, we look at a few specific examples, one of which consists ofNfermions initially confined on one side of a partition in a box. The partition is removed and the fermions equilibrate extremely quickly in time O(1 N).

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We compute how bulk loops renormalize both bulk and brane effective interactions for codimension-two branes in 6D gauged chiral supergravity, as functions of the brane tension and brane-localized flux. We do so by explicitly integrating out hyper- and gauge-multiplets in 6D gauged chiral supergravity compactified to 4D on a flux-stabilized 2D rugby-ball geometry, specializing the results of a companion paper, arXiv:1210.3753 , to the supersymmetric case. While the brane back-reaction generically breaks supersymmetry, we show that the bulk supersymmetry can be preserved if the amount of brane- localized flux is related in a specific BPS-like way to the brane tension, and verify that the loop corrections to the brane curvature vanish in this special case. In these systems it is the brane-bulk couplings that fix the size of the extra dimensions, and we show that in some circumstances the bulk geometry dynamically adjusts to ensure the supersymmetric BPS-like condition is automatically satisfied. We investigate the robustness of this residual supersymmetry to loops of non-supersymmetric matter on the branes, and show that supersymmetry- breaking effects can enter only through effective brane-bulk interactions involving at least two derivatives. We comment on the relevance of this calculation to proposed applications of codimension-two 6D models to solutions of the hierarchy and cosmological constant problems. © 2013 SISSA.

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Mobilização de Governadores de Estado e da Ordem dos Advogados do Brasil (OAB) em prol da realização de eleições presidenciais em 1988. Debate sobre a diferença entre empresa de capital nacional e a empresa de capital estrangeiro. Obstrução da pauta de votação sobre o capítulo Da Ordem Econômica.

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We present radio images of NRAO 530 on scales ranging from pc to kpc. The observations include the EVN at 5 GHz, the VLBA at 1.6, 8.6 and 15 GHz, the MERLIN at 1.6 and 5 GHz, and the VLA at 5, 8.4, 15, 22, and 43 GHz. The VLBI images show a core-jet structure with an oscillating trajectory on a scale of about 30 mas north of the strongest compact component (core). Superluminal motions are detected in five of the jet components with apparent velocities in the range of 13.6 to 25.2c. A new component is detected at 15 GHz with the VLBA observations, which appears to be associated with the outburst in 2002. Significant polarized emission is detected around the core with the VLBA observations at 15 GHz. Rapid variations of the polarization intensity and angle are found between the epochs in 2002 and 2004. On the kpc-scale, a distant component (labelled as WL) located 11 aresec west (PA=-86 degrees) of the core is detected beyond the core-jet structure which extended to several hundreds of mas in the north-west direction (-50 degrees). A significant emission between the core-jet structure and the WL is revealed. A clump of diffuse emission (labelled EL, 12 arcsec long) at PA 70 degrees to the core, is also detected in the VLA observations, suggesting the presence of double lobes in the source. The core component shows a flat spectrum, while the distant components WL and EL have steep spectra. The steep spectra of the distant components and the detection of the arched emission suggest that the distant components are lobes or hot-spots powered by the core of NRAO 530. The morphologies from pc- to kpc-scales and the bending of jets are investigated. The observed radio morphology from pc to kcp appears to favor the model in which precession or wobbling of the nuclear disk drives the helical motion of the radio plasma and produces the S-shaped structure on kpc scale.

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In der vorliegenden Arbeit, deren erster Teil in Heft 2 dieser Zeitschrift veröffentlicht wurde, werden die Kosten der “Schnittkäserei” am Beispiel der Herstellung von Gouda-Käse modellhaft bestimmt, wobei die vor 17 Jahren durchgeführten Modellkalkulationen für Edamerkäse hinsichtlich der Funktionsinhalte der Abteilung ausgedehnt und dem neuesten Stand der Technik sowie heutigen Schnittkäsereiproduktionsstrukturen angepaßt wurden. Zudem sind die generell für alle Modellabteilungen geltenden methodischen Weiterentwicklungen in den Kalkulationen berücksichtigt worden. In den sechs Unterabteilungen Vorstapelung, Bruchbereitung und Pressen, Salzbad, Käsebehandlung und Reifungslager, Abpackung sowie Versandkühlraum und Expedition wird ein rindengereifter Gouda-Käse (12-kg-Laib) hergestellt und hinsichtlich seiner Kostenverursachung untersucht. Zur Bestimmung der Modellkosten wurden vier Modelle gebildet, deren Kapazitäten in der Kesselmilchverarbeitung zwischen 8.000 und 48.000 l/h liegen. In Abhängigkeit vom Beschäftigungsgrad, der für Werte zwischen 21 und 100% simuliert wurde, können so die Kosten für Käsemengen zwischen rd. 5.100 und 30.8001 Käse/Jahr bestimmt werden. Gemäß den vorgegebenen Kapazitäten müssen die technischen Voraussetzungen für die Ausgestaltung der einzelnen Unterabteilungen modellspezifisch festgelegt werden, wobei eine Anpassung der technischen Auslegung an eine verringerte Auslastung bei 33%iger Beschäftigung erfolgt. Die zu tätigenden Investitionen für die Grundversion betragen 10,6 Mio. DM in Modell 1 und 40,3 Mio. DM in Modell 4. Bezogen auf die jeweilige Rohstoffeinsatzmenge ergeben sich hieraus spezifische Investitionen, die mit zunehmender Modellgröße erheblich sinken: Machen sie im Modell 1 noch 215,6 Tsd. DM/1 Mio. kg jährlicher Rohstoffeinsatzmenge aus, so verringern sie sich im Modell 4 auf 135,3 Tsd. DM/1 Mio. kg. Produktspezifische Investitionen und Faktormengenverbräuche führen zu den Einzelkosten des Produktes Gouda, die je nach Modellgröße und Beschäftigungsgrad zwischen 510,8 und 538,5 Pf/kg Käse liegen. Die Gesamtkosten der “Schnittkäserei”, die sich aus den Einzelkosten des Produktes Gouda und den Einzelkosten der Abteilung zusammensetzen, betragen 530,9 bis 654,3 Pf/kg Käse. Den größten Anteil an den Gesamtkosten haben die Rohstoffkosten (73 bis 90%). Der Anteil der Anlagekosten schwankt je nach Beschäftigung zwischen 4 und 18%, während die Personal- und sonstige Betriebskosten im Vergleich zu den beiden vorgenannten Kostenartengruppen in allen Modellen nur eine geringere Bedeutung haben. Betrachtet man die Gesamtkosten (ohne Rohstoffkosten) hinsichtlich ihrer Entstehung in den Unterabteilungen, so ist festzustellen, daß die höchsten Kosten in der Unterabteilung Bruchbereitung und Pressen anfallen: Bei einer 100%igen Beschäftigung betragen sie z.B. in Modell 3 42% der Gesamtkosten (ohne Rohstoff). Die geringsten Kosten (2%) fallen dagegen in der Unterabteilung Versandkühlraum und Expedition an. Die Kostenanalyse zeigt deutlich, daß mit zunehmender Modellgröße und steigender Produktionsmenge erhebliche Stückkostendegressionen zu erzielen sind, wobei der Einfluß des Beschäftigungsgrades auf die Kostendegression deutlich höher ist als derjenige der Modellgröße.

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La eficiencia, el comportamiento y la capturabilidad de los aparejos de pesca, es una tarea dificil; pero su conocimiento resulta de gran utilidad para el diseño, construcción de las redes y propiedades de las características de las embarcaciones. De otro lado es de gran utilidad la determinación del coeficiente de capturabilidad de las redes de arrastre, con fines de evaluación de los recursos.