91 research outputs found
Neutrino-nucleus reactions in the delta resonance region
Reliable estimates of neutrino-nucleus reactions in the resonance-excitation
region play an important role in many of the on-going and planned neutrino
oscillation experiments. We study here neutrino-nucleus reactions in the
delta-particle excitation region with the use of neutrino pion-production
amplitudes calculated in a formalism in which the resonance contributions and
the background amplitudes are treated on the same footing. Our approach leads
to the neutrino-nucleus reaction cross sections that are significantly
different from those obtained in the conventional approach wherein only the
pure resonance amplitudes are taken into account. To assess the reliability of
our formalism, we calculate the electron-nucleus scattering cross sections in
the same theoretical framework; the calculated cross sections agree reasonably
well with the existing data.Comment: 14 pages, 8 figures; typo, references and one figure adde
Primary sclerosing cholangitis - an insidious enemy of the liver - case report
Background and introduction
Primary sclerosing cholangitis (PSC) is a chronic liver disease with features of cholestasis as a result of inflammation and damage to the bile ducts, which can eventually lead to liver fibrosis and parenchymal failure at an advanced stage.
Case Report
A 22-year-old man was admitted urgently to the Department of Gastroenterology for complaints of abdominal pain, weakness and tarry stools. A panel of detailed examinations was performed to establish the diagnosis. An abdominal ultrasound scan showed significant enlargement of the liver and spleen. Gastroscopy revealed variceal columns of II degree in the lower esophagus, which were cauterized. Laboratory tests confirmed anemia, reduced platelet and white blood cell counts, increased activity of ALT, ASP, GTP, ALP and slight elevation of total bilirubin in the blood. Based on the clinical disease manifestation and the results of diagnostic tests, cirrhosis of unknown origin was suspected. Subsequent magnetic resonance cholangiopancreatography (MRCP) revealed the presence of multiple strictures in the intra- and extrahepatic bile ducts and gave rise to the diagnosis of PSC. Pharmacological treatment was administered. Currently, the patient remains under the close care of the Transplant Clinic, where he undergoes regular checks of liver function, and endoscopic variceal ligation (EVL) as required.
Discussion with conclusions
The case presented here shows that the course of PSC can be insidious and asymptomatic. Despite the absence of clinical symptoms, the disease can lead to the development of advanced cirrhosis even in patients of young age and be diagnosed as late as at the decompensated stage, when the only treatment option remains organ transplantation
The Long-Baseline Neutrino Experiment: Exploring Fundamental Symmetries of the Universe
The preponderance of matter over antimatter in the early Universe, the
dynamics of the supernova bursts that produced the heavy elements necessary for
life and whether protons eventually decay --- these mysteries at the forefront
of particle physics and astrophysics are key to understanding the early
evolution of our Universe, its current state and its eventual fate. The
Long-Baseline Neutrino Experiment (LBNE) represents an extensively developed
plan for a world-class experiment dedicated to addressing these questions. LBNE
is conceived around three central components: (1) a new, high-intensity
neutrino source generated from a megawatt-class proton accelerator at Fermi
National Accelerator Laboratory, (2) a near neutrino detector just downstream
of the source, and (3) a massive liquid argon time-projection chamber deployed
as a far detector deep underground at the Sanford Underground Research
Facility. This facility, located at the site of the former Homestake Mine in
Lead, South Dakota, is approximately 1,300 km from the neutrino source at
Fermilab -- a distance (baseline) that delivers optimal sensitivity to neutrino
charge-parity symmetry violation and mass ordering effects. This ambitious yet
cost-effective design incorporates scalability and flexibility and can
accommodate a variety of upgrades and contributions. With its exceptional
combination of experimental configuration, technical capabilities, and
potential for transformative discoveries, LBNE promises to be a vital facility
for the field of particle physics worldwide, providing physicists from around
the globe with opportunities to collaborate in a twenty to thirty year program
of exciting science. In this document we provide a comprehensive overview of
LBNE's scientific objectives, its place in the landscape of neutrino physics
worldwide, the technologies it will incorporate and the capabilities it will
possess.Comment: Major update of previous version. This is the reference document for
LBNE science program and current status. Chapters 1, 3, and 9 provide a
comprehensive overview of LBNE's scientific objectives, its place in the
landscape of neutrino physics worldwide, the technologies it will incorporate
and the capabilities it will possess. 288 pages, 116 figure
XXVIIth International Conference on Supersymmetry and Unification of Fundamental Interactions (SUSY 2019). Final Report
Center for Theoretical Underground Physics and Related Areas – CETUP*2016 Summer Program
Center for Theoretical Underground Physics and Related Fields. CETUP2015/ Particle Physics and Cosmology Conference. PPC2015)
Recommended from our members
DUNE collaboration
The Deep Underground Neutrino Experiment (DUNE), a 40-kton underground liquid argon time projection chamber experiment, will be sensitive to the electron-neutrino flavor component of the burst of neutrinos expected from the next Galactic core-collapse supernova. Such an observation will bring unique insight into the astrophysics of core collapse as well as into the properties of neutrinos. The general capabilities of DUNE for neutrino detection in the relevant few- to few-tens-of-MeV neutrino energy range will be described. As an example, DUNE’s ability to constrain the νe spectral parameters of the neutrino burst will be considered.Funded by SCOAP3. This document was prepared by the DUNE collaboration using the resources of the Fermi National Accelerator Laboratory (Fermilab), a U.S. Department of Energy, Office of Science, HEP User Facility. Fermilab is managed by Fermi Research Alliance, LLC (FRA), acting under Contract No. DE-AC02-07CH11359. This work was supported by CNPq, FAPERJ, FAPEG and FAPESP, Brazil; CFI, IPP and NSERC, Canada; CERN; MŠMT, Czech Republic; ERDF, H2020-EU and MSCA, European Union; CNRS/IN2P3 and CEA, France; INFN, Italy; FCT, Portugal; NRF, South Korea; CAM, Fundación “La Caixa” and MICINN, Spain; SERI and SNSF, Switzerland; TÜB˙ITAK, Turkey; The Royal Society and UKRI/STFC, United Kingdom; DOE and NSF, United States of America. This research used resources of the National Energy Research Scientific Computing Center (NERSC), a U.S. Department of Energy Office of Science User Facility operated under Contract No. DE-AC02-05CH11231
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