Nuclear Physics
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Nuclear Physics

Selected contemporary works in Nuclear Physics
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Nuclear spintronic technologies advances via practical material at room temperature

B y  Carla Reiter  - An electronics technology that uses the "spin" - or magnetization - of atomic nuclei to store and process information promises huge gains in performance over today's...
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Nucleus Physics Cross Stitch Pattern

A cute old fashioned nucleus, perfect for t shirts or for a framed picture in the lab! DMC stranded cotton Stitch count: 140 x 140 10 x 10 on 14 count
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136Xe + 208Pb reaction: A test of models of multinucleon transfer reactions

The yields of over 200 projectile-like fragments (PLFs) and target-like fragments (TLFs) from the interaction of (${E}_{\mathrm{c}.\mathrm{m}.}=450$ MeV) $^{136}\text{Xe}$ with a thick target of $^{208}\text{Pb}$ were measured using Gammasphere and off-line $\ensuremath{\gamma}$-ray spectroscopy, giving a comprehensive picture of the production cross sections in this reaction. The measured yields were compared to predictions of the grazing model and the predictions of Zagrebaev and Greiner using
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Lifetime measurement of the first excited 2+ state in 112Te

The lifetime of the ${2}^{+}\ensuremath{\rightarrow}{0}_{\mathrm{g}.\mathrm{s}.}^{+}$ transition in the neutron-deficicient nucleus $^{112}\mathrm{Te}$ has been measured for the first time using the DPUNS plunger and the recoil distance Doppler shift technique. The deduced value for the reduced transition probability is $B(E2:{0}_{\mathrm{g}.\mathrm{s}.}^{+}\ensuremath{\rightarrow}{2}^{+})=0.46\ifmmode\pm\else\textpm\fi{}0.04\phantom{\rule{0.28em}{0ex}}{e}^{2}{\mathrm{b}}^{2}$, indicating that t
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Hidden pseudospin and spin symmetries and their origins in atomic nuclei

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Publications
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Spallation reactions: A successful interplay between modeling and applications

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Probe Spin-Velocity Dependent New Interactions by Spin Relaxation Times of Polarized 3He Gas

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Formation of medical radioisotopes 111In, 117m Sn, 124Sb, and 177Lu in photonuclear reactions

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Bacteria Could Help Clean Groundwater Contaminated by Uranium Ore Processing, Rutgers Study Finds

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Gamma-ray method flags up nuclear stashes

Physicists investigating technique to enhance detection of uranium and plutonium in cargo.
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Precision Tracking with a Single Gaseous Pixel Detector

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Alpha-gamma pulse-shape discrimination in Gd3Al2Ga3O12 (GAGG):Ce3+ crystal scintillator using shape indicator

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Environmental Safety Assessment of Krasnoyarsk Krai Based on a Public Health Risk Analysis

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Collectivity in the light radon nuclei measured directly via Coulomb excitation

Collectivity in the light radon nuclei measured directly via Coulomb excitation
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Pasta nucleosynthesis: Molecular dynamics simulations of nuclear statistical equilibrium

Background: Exotic nonspherical nuclear pasta shapes are expected in nuclear matter at just below saturation density because of competition between short-range nuclear attraction and long-range Coulomb repulsion.
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In first, a woman will run U.S. nuclear weapons laboratory

Jill Hruby named to lead Sandia National Laboratories in New Mexico
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Theoretical study of the synthesis of superheavy nuclei using radioactive beams

The prospects for the synthesis of superheavy nuclei (SHN) using radioactive beams are evaluated quantitatively within the framework of a dinuclear system (DNS) concept. The evaporation-residue cross section (ERCS) for the hot fusion reactions are investigated systematically and compared with the recent results obtained by Loveland [Phys. Rev. C 76, 014612 (2007)]. In most cases the intensities of radioactive beams are significantly less than those of the stable beams, therefore using stable bea
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Radon applications in geosciences – Progress & perspectives

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Multinucleon photonuclear reactions on 209Bi: Experiment and evaluation

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The isospin quartic term in the kinetic energy of neutron-rich nucleonic matter

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Annual reports 2014 - Deutsches Elektronen-Synchrotron (DESY)

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Visualizing the 'matrix': App provides insight into the quantum world of coupled nuclear spins

Magnetic resonance tomography images are an important diagnostic tool. The achievable contrast depends on how well the nuclear spins that form the basis of the imaging signals can be controlled. Mathematically, the properties of nuclear spins are described by special matrices. Now a team of researchers has developed an intuitive graphical representation of the information contained in these matrices for coupled spins in arbitrary quantum states.
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Improving PET monitoring of proton therapy

New model could provide a patient-specific way to improve proton therapy
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