1,935 research outputs found

    Reduction of Charm Quark Mass Scheme Dependence in Bˉ→Xsγ\bar B \to X_s \gamma at the NNLL Level

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    The uncertainty of the theoretical prediction of the Bˉ→Xsγ\bar B \to X_s \gamma branching ratio at NLL level is dominated by the charm mass renormalization scheme ambiguity. In this paper we calculate those NNLL terms which are related to the renormalization of mcm_c, in order to get an estimate of the corresponding uncertainty at the NNLL level. We find that these terms significantly reduce (by typically a factor of two) the error on BR(Bˉ→Xsγ){BR}(\bar B \to X_s \gamma) induced by the definition of mcm_c. Taking into account the experimental accuracy of around 10% and the future prospects of the BB factories, we conclude that a NNLL calculation would increase the sensitivity of the observable Bˉ→Xsγ\bar B \to X_s \gamma to possible new degrees of freedom beyond the SM significantly.Comment: 13 pages including 3 figure

    The totally asymmetric exclusion process with generalized update

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    We consider the totally asymmetric exclusion process in discrete time with generalized updating rules. We introduce a control parameter into the interaction between particles. Two particular values of the parameter correspond to known parallel and sequential updates. In the whole range of its values the interaction varies from repulsive to attractive. In the latter case the particle flow demonstrates an apparent jamming tendency not typical for the known updates. We solve the master equation for NN particles on the infinite lattice by the Bethe ansatz. The non-stationary solution for arbitrary initial conditions is obtained in a closed determinant form.Comment: 11 pages, 3 figure

    Universal exit probabilities in the TASEP

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    We study the joint exit probabilities of particles in the totally asymmetric simple exclusion process (TASEP) from space-time sets of given form. We extend previous results on the space-time correlation functions of the TASEP, which correspond to exits from the sets bounded by straight vertical or horizontal lines. In particular, our approach allows us to remove ordering of time moments used in previous studies so that only a natural space-like ordering of particle coordinates remains. We consider sequences of general staircase-like boundaries going from the northeast to southwest in the space-time plane. The exit probabilities from the given sets are derived in the form of Fredholm determinant defined on the boundaries of the sets. In the scaling limit, the staircase-like boundaries are treated as approximations of continuous differentiable curves. The exit probabilities with respect to points of these curves belonging to arbitrary space-like path are shown to converge to the universal Airy2_2 process.Comment: 46 pages, 7 figure

    The use of combined hormonal contraception in the context of the COVID-19 pandemic

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    Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV2) was declared the cause of a global pandemic in early 2020. Patients with COVID-19 are at high risk for thrombotic occlusions of the arteries and veins. There are many ways that explain the high risk of thrombosis in COVID-19, they are conditionally divided into two main categories: mechanisms in which the renin-angiotensinaldosterone system is involved and mechanisms that affect the regulation of the immune response. It is assumed that the uncomplicated course of the disease is characterized by endothelial dysfunction, but if the process progresses with a pronounced immune response, plasma coagulation factors may also be involved, which significantly increases the risks of thromboembolic complications. The use of combined hormonal contraception (CHC) in the current conditions raises a number of concerns. According to some researchers, disorders of the hemostasis system observed in patients with COVID-19 may worsen while taking CHC and increase the risk of thromboembolic complications, which is especially important in severe disease with prolonged immobilization. However, with the use of CHC, the increase in thrombotic risks is explained primarily by changes in the plasma component of the hemostasis sys tem. At first glance, the recommendations to stop hormone therapy with confirmed COVID-19 seem logical, but they are based only on the procoagulant activity of estrogens, and not on real evidence. In patients with COVID-19, the increase in coagulation is associ ated with massive damage to the vascular endothelium (the so-called «external» coagulation pathway) and the immune response, and not with a primary increase in the level of coagulation factors per se. At the same time, stopping the intake of estrogens deprives the patient of their important protective effect. Thus, it became necessary to develop clinical guidelines for the management of women using contraception in the context of the COVID-19 pandemic

    Multispecies virial expansions

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    We study the virial expansion of mixtures of countably many different types of particles. The main tool is the Lagrange–Good inversion formula, which has other applications such as counting coloured trees or studying probability generating functions in multi-type branching processes. We prove that the virial expansion converges absolutely in a domain of small densities. In addition, we establish that the virial coefficients can be expressed in terms of two-connected graphs

    Draft genome of a novel methanotrophic Methylobacter sp. from the volcanic soils of Pantelleria Island

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    The genus Methylobacter is considered an important and often dominant group of aerobic methane-oxidizing bacteria in many oxic ecosystems, where members of this genus contribute to the reduction of CH4 emissions. Metagenomic studies of the upper oxic layers of geothermal soils of the Favara Grande, Pantelleria, Italy, revealed the presence of various methane-oxidizing bacteria, and resulted in a near complete metagenome assembled genome (MAG) of an aerobic methanotroph, which was classified as a Methylobacter species. In this study, the Methylobacter sp. B2 MAG was used to investigate its metabolic potential and phylogenetic affiliation. The MAG has a size of 4,086,539 bp, consists of 134 contigs and 3955 genes were found, of which 3902 were protein coding genes. All genes for CH4 oxidation to CO2 were detected, including pmoCAB encoding particulate methane monooxygenase (pMMO) and xoxF encoding a methanol dehydrogenase. No gene encoding a formaldehyde dehydrogenase was present and the formaldehyde to formate conversion follows the tetrahydromethanopterin (H4MPT) pathway. “Ca. Methylobacter favarea” B2 uses the Ribulose-Mono-Phosphate (RuMP) pathway for carbon fixation. Analysis of the MAG indicates that Na+/H+ antiporters and the urease system might be important in the maintenance of pH homeostasis of this strain to cope with acidic conditions. So far, thermoacidophilic Methylobacter species have not been isolated, however this study indicates that members of the genus Methylobacter can be found in distinct ecosystems and their presence is not restricted to freshwater or marine sediments

    Charged-Particle Multiplicity in Proton-Proton Collisions

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    This article summarizes and critically reviews measurements of charged-particle multiplicity distributions and pseudorapidity densities in p+p(pbar) collisions between sqrt(s) = 23.6 GeV and sqrt(s) = 1.8 TeV. Related theoretical concepts are briefly introduced. Moments of multiplicity distributions are presented as a function of sqrt(s). Feynman scaling, KNO scaling, as well as the description of multiplicity distributions with a single negative binomial distribution and with combinations of two or more negative binomial distributions are discussed. Moreover, similarities between the energy dependence of charged-particle multiplicities in p+p(pbar) and e+e- collisions are studied. Finally, various predictions for pseudorapidity densities, average multiplicities in full phase space, and multiplicity distributions of charged particles in p+p(pbar) collisions at the LHC energies of sqrt(s) = 7 TeV, 10 TeV, and 14 TeV are summarized and compared.Comment: Invited review for Journal of Physics G -- version 2: version after referee's comment

    Ď•\phi Meson Production in In-In Collisions and the Ď•\phi Puzzle

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    The NA60 experiment measured dimuon production in In-In collisions at 158 AGeV. This paper presents a high statistics measurement of ϕ→μμ\phi\to\mu\mu with the specific objective to provide insight on the ϕ\phi puzzle, i.e. the difference in the inverse TT slopes and absolute yields measured by NA49 and NA50 in the kaon and lepton channel, respectively. Transverse momentum distributions were studied as a function of centrality. The slope parameter TT shows a rapid increase with centrality, followed by a saturation. Variations of TT with the fit range of the order of 15 MeV were observed, possibly as a consequence of radial flow. The ϕ\phi meson yield normalized to the number of participants increases with centrality and is consistently higher than the yield measured by the NA49 experiment at any centrality.Comment: 4 Pages, 2 Figures. Proceedings of the 20th^{th} International Conference on Ultra-Relativistic Nucleus Nucleus Collision

    Evidence for radial flow of thermal dileptons in high-energy nuclear collisions

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    The NA60 experiment at the CERN SPS has studied low-mass dimuon production in 158 AGeV In-In collisions. An excess of pairs above the known meson decays has been reported before. We now present precision results on the associated transverse momentum spectra. The slope parameter Teff extracted from the spectra rises with dimuon mass up to the rho, followed by a sudden decline above. While the initial rise is consistent with the expectations for radial flow of a hadronic decay source, the decline signals a transition to an emission source with much smaller flow. This may well represent the first direct evidence for thermal radiation of partonic origin in nuclear collisions.Comment: Accepted for publication in Physical Review Letter
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