Search results for "Nuclear and High Energy Physic"

showing 10 items of 8253 documents

Flat Bands and Salient Experimental Features Supporting the Fermion Condensation Theory of Strongly Correlated Fermi

2020

The physics of strongly correlated Fermi systems, being the mainstream topic for more than half a century, still remains elusive. Recent advancements in experimental techniques permit to collect important data, which, in turn, allow us to make the conclusive statements about the underlying physics of strongly correlated Fermi systems. Such systems are close to a special quantum critical point represented by topological fermion-condensation quantum phase transition which separates normal Fermi liquid and that with a fermion condensate, forming flat bands. Our review paper considers recent exciting experimental observations of universal scattering rate related to linear temperature dependence…

Condensed Matter::Quantum GasesQuantum phase transitionSuperconductivityPhysicsNuclear and High Energy PhysicsCondensed matter physics010308 nuclear & particles physicsFermion01 natural sciencesAtomic and Molecular Physics and OpticsElectrical resistivity and conductivityQuantum critical pointScattering rate0103 physical sciencesFermi liquid theory010306 general physicsFermi Gamma-ray Space TelescopePhysics of Atomic Nuclei
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Search for a multi-Higgs-boson cascade inW+W−bb¯events with the ATLAS detector inppcollisions ats=8  TeV

2014

A search is presented for new particles in an extension to the Standard Model that includes a heavy Higgs boson (H-0), an intermediate charged Higgs-boson pair (H-+/-), and a light Higgs boson (h(0)). The analysis searches for events involving the production of a single heavy neutral Higgs boson which decays to the charged Higgs boson and a W boson, where the charged Higgs boson subsequently decays into a W boson and the lightest neutral Higgs boson decaying to a bottom-antibottom-quark pair. Such a cascade results in a W-boson pair and a bottom-antibottom-quark pair in the final state. Events with exactly one lepton, missing transverse momentum, and at least four jets are selected from a d…

Condensed Matter::Quantum GasesQuarkPhysicsNuclear and High Energy PhysicsParticle physicsLarge Hadron ColliderBranching fractionHigh Energy Physics::PhenomenologySupersymmetry7. Clean energyCharged particleNuclear physicsPair productionHiggs bosonHigh Energy Physics::ExperimentLeptonPhysical Review D
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Pumped helium system for cooling positron and electron traps to 1.2 K

2011

Abstract Extremely precise tests of fundamental particle symmetries should be possible via laser spectroscopy of trapped antihydrogen ( H ¯ ) atoms. H ¯ atoms that can be trapped must have an energy in temperature units that is below 0.5 K—the energy depth of the deepest magnetic traps that can currently be constructed with high currents and superconducting technology. The number of atoms in a Boltzmann distribution with energies lower than this trap depth depends sharply upon the temperature of the thermal distribution. For example, ten times more atoms with energies low enough to be trapped are in a thermal distribution at a temperature of 1.2 K than for a temperature of 4.2 K. To date, H…

Condensed Matter::Quantum GasesSuperconductivityPhysicsantihydrogenNuclear and High Energy Physicsliquid heliumLiquid heliumPenning trapchemistry.chemical_elementElectronAtmospheric temperature rangePenning traplaw.inventionchemistrylawAntimatterantiprotonrefrigeratorPhysics::Atomic PhysicsAtomic physicsAntihydrogenInstrumentationHelium
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Unitarity constraint for threshold coherent pion photoproduction on the deuteron

1997

The contribution of the two-step process {gamma}d{r_arrow}pn{r_arrow}{pi}{sup 0}d to the imaginary part of the amplitude for coherent pion production on the deuteron is calculated at threshold exploiting unitarity constraints. The result shows that this absorptive process is not negligible and has to be considered in an extraction of the elementary neutron production amplitude from the {gamma}d{r_arrow}{pi}{sup 0}d cross section at threshold. {copyright} {ital 1997} {ital The American Physical Society}

Constraint (information theory)Nuclear physicsPhysicsNuclear and High Energy PhysicsParticle physicsPionAmplitudeDeuteriumUnitarityNeutronProduction (computer science)Few-body systemsPhysical Review C
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Density as a constraint and the separation of internal excitation energy in TDHF

1985

We present a fast and efficient constrained Hartree-Fock iteration scheme which constraints the complete density distribution to remain constant. The scheme is particularly suited to a coordinate- or momentum-space representation. The technique is applied to separate the collective and the internal energy in a propagating TDHF state. We study the behavior of these two energies in an16O+16O collision.

Constraint (information theory)PhysicsNuclear and High Energy PhysicsClassical mechanicsInternal energyNuclear TheoryNuclear fusionConstant (mathematics)CollisionRepresentation (mathematics)ExcitationEnergy (signal processing)Computational physicsZeitschrift f�r Physik A Atoms and Nuclei
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Interaction strength and shape difference for the h9/2 and h11/2 configurations in163Tm

1991

The strongly shape driving πh9/2[541]l/2− configuration with α=+1/2 exhibits some anomalous, and so far unexplained, features concerning the crossing frequency, ħωc, the aligned angular momentum, ix, and interaction strength, at the alignment of the first pair of i13/2 quasineutrons in several odd-Z rare earth-nuclei. The h9/2[541]1/2− and h11/2[523]7/2− bands have been studied in the stably deformed rare-earth nucleus163Tm to investigate these features. A difference in band crossing frequency of ∼ 80 keV between the two bands is found. Rotational bands built on these two configurations have been found to cross in the spin range I=25/2–29/2 ħ. Theγ-decay pattern between the two bands is est…

Core (optical fiber)PhysicsNuclear and High Energy PhysicsAngular momentumSimilarity (geometry)YrastNuclear fusionNeutronAtomic physicsElectronic band structureSpin-½Zeitschrift f�r Physik A Hadrons and Nuclei
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High-spin levels in 63 145 Eu82

1996

The level scheme of theN=82 nucleus145Eu has been extended toI=(55/2) andEx=11.2 MeV in an experiment with the Tessa Compton-suppressed Ge detector array using the127I(22Ne,4n) reaction. Most of the complicated and irregular level scheme of145Eu can be interpreted as proton multi-quasiparticle states in comparison to the64146Gd82 core nucleus but also excitations across the neutronN=82 core have been observed.

Core (optical fiber)PhysicsNuclear and High Energy PhysicsProtonHalo nucleusDetector arrayAtomic physicsSpin-½Zeitschrift für Physik A: Hadrons and Nuclei
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Scaled factorial moments and split-bin correlation functions. A thermodynamic model comparison

1991

Abstract We compare the scaled factorial moments to the recently proposed split-bin correlation functions, using the thermodynamic model for heavy ion collisions that was recently demonstrated to exhibit power-law growth of the scaled factorial moments as a function of bin size. We find that the split-bin correlation functions are superior for experimental use, as they are intensitive to fictitious correlations due to limited resolving power. In addition, after correction for non-flat single-particle distributions, the split-bin correlation functions provide an unambiguous signal for correlations. As a result, they may provide more powerful evidence for new phenomena like fractal structure …

CorrelationPhysicsNuclear and High Energy PhysicsFactorialFractallawIntermittencyStructure (category theory)Scaled correlationFunction (mathematics)Statistical physicsBinlaw.inventionPhysics Letters B
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Electromagnetic mass difference of pions at low temperature

1999

We compute low temperature corrections to the electromagnetic mass difference of pions in the chiral limit. The computation is done in a model independent way in the framework of chiral perturbation theory, using the background field method and the hard thermal loop approximation. We also generalize at low temperature the sum rule of Das et al. We find that the mass difference between the charged and neutral pions decreases at low temperature $T$ with respect to the T=0 value. This is so in spite of the fact that charged particles always get a thermal correction to their masses of order $\sim eT$, where $e$ is the gauge coupling constant. Our result can be understood as a consequence of the…

Coupling constantChiral anomalyPhysicsNuclear and High Energy PhysicsChiral perturbation theoryNuclear TheoryThermal quantum field theoryHigh Energy Physics::LatticeFOS: Physical sciencesFísicaNuclear Theory (nucl-th)High Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)PionQuantum mechanicsQuantum electrodynamicsSum rule in quantum mechanicsElectromagnetic massChiral symmetry breaking
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Antimony-121 Mössbauer spectra of organoantimony derivatives containing Sb-Sb bonds

1994

121-Sb Mossbauer data are reported for a number of organoantimony rings and catena-stibanes. These compounds are representative of RSb(Sb)2 and R2SbSb type of coordination, and spectral parameters are compared and discussed in relation to RSbCl2 and R2SbCl systems. Although the trend in isomer shift is similar, the present compounds show slightly less negative isomer shift values together with a remarkable reduction of the quadrupolar coupling constant. A rationalization of the quadrupolar interaction in the above series of compounds appears feasible by using point charge model calculations whose results, in terms of bonding, indicate a large contribution of p-electron density along Sb-Sb b…

Coupling constantNuclear and High Energy PhysicsElectron densityMössbauer effectIsotopeChemistryStable isotope ratiochemistry.chemical_elementCondensed Matter PhysicsAtomic and Molecular Physics and OpticsCrystallographyAntimonyComputational chemistryMössbauer spectroscopyPhysical and Theoretical ChemistryThin filmHyperfine Interactions
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