Search results for "chiral"

showing 10 items of 752 documents

Radiative Kaon decays and CP violation in chiral perturbation theory

1988

38 páginas, 11 figuras, 2 tablas.-- CERN-TH-4853-87 ; UWTHPH-1987-31.

Coupling constantPhysicsNuclear and High Energy PhysicsParticle physicsChiral perturbation theoryFísicaObservableSpectral lineAmplitudeQuantum electrodynamicsBibliographyRadiative transferCP violationParticle Physics - PhenomenologyNuclear Physics B
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Universality of the rho-meson coupling in effective field theory

2004

It is shown that both the universal coupling of the rho-meson and the Kawarabayashi-Suzuki-Riadzuddin-Fayyazuddin expression for the magnitude of its coupling constant follow from the requirement that chiral perturbation theory of pions, nucleons, and rho-mesons is a consistent effective field theory. The prerequisite of the derivation is that all ultraviolet divergences can be absorbed in the redefinition of fields and the available parameters of the most general effective Lagrangian.

Coupling constantPhysicsParticle physicsChiral perturbation theoryRho mesonMesonHigh Energy Physics::LatticeNuclear TheoryGeneral Physics and AstronomyFOS: Physical sciencesUniversality (dynamical systems)RenormalizationHigh Energy Physics - PhenomenologyPionHigh Energy Physics - Phenomenology (hep-ph)Quantum electrodynamicsEffective field theoryNuclear Experiment
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The nature of Lambda (1405) hyperon resonance in chiral dynamics

2010

10th International Conference on Hypernuclear and Strange Particle Physics. Tokai, JAPAN, SEP 14-18, 2009

CouplingPhysicsNuclear and High Energy PhysicsParticle physicsKaon induced Lambda (1405) productionNuclear TheoryScatteringHadronSpectrum (functional analysis)HyperonStructure of Lambda (1405)FOS: Physical sciencesFísicaResonance (particle physics)Spectral lineNuclear Theory (nucl-th)K(K)over-barN quasibound stateChiral unitary modelHigh Energy Physics::ExperimentInvariant massAtomic physics
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Eta-eta' Photoproduction and the axial isoscalar neutral current coupling

1995

We show that coherentη andη′ photoproduction by means of the Primakoff Effect on the proton depends on the strange component of the neutral axial current coupling. We construct polarization asymmetries that are sensitive to this coupling through theγ−Z interference. Theη′ is not a Goldstone boson of a spontaneously broken chiral symmetry, but a phenomenological analysis of theη andη′ production through chiral perturbation theory allows to calculate the observables of interest. The polarized proton or polarized photon asymmetries are predicted to be close to 10−4 for −q 2∼0.1−0.5 GeV2.

CouplingPhysicsParticle physicsChiral perturbation theoryPhysics and Astronomy (miscellaneous)Neutral currentIsoscalarElementary particlePrime (order theory)Partícules (Física nuclear)Nuclear physicsGoldstone bosonHigh Energy Physics::ExperimentNucleonNuclear ExperimentPrimakoff effectBoson
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Momentum dependence of the decay η→π+π−π0

1998

Abstract The π 0 momentum dependence of the decay η → π + π − π 0 has been measured with the Crystal Barrel detector. The analysis is based on 3230 events. The results of this independent measurement are compared to new chiral perturbation theory calculations and previous measurements.

CrystalNuclear physicsMomentumPhysicsNuclear and High Energy PhysicsChiral perturbation theoryPhysics::Instrumentation and DetectorsDetectorBarrel (horology)Dalitz plotPhysics Letters B
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Decacyclene as complexation manifold: synthesis, structure and properties of its Fe2 and Fe4 slipped triple-decker complexes.

2006

Reaction of [(eta(5)-Me4EtC5)Fe(II)Cl(tmeda)] (tmeda = N,N,N'N'-tetramethylethylenediamine) with a polyanion solution of decacyclene (1) results in the formation of the triple-deckers [{(eta(5)-Me4EtC5)Fe}2-mu2-(eta(6):eta(6)-decacyclene)] (3) and [{(eta(5)-Me4EtC5)Fe}4-mu4-(eta(6):eta(6):eta(6):eta(6)-decacyclene)] (4). Metal complexation in 3 and 4 occurs on opposite faces of the pi perimeter in an alternating mode. The decacyclene ring adopts a gently twisted molecular propeller geometry with twofold crystallographic symmetry (C2). Complex 4 crystallizes in the chiral space group C222(1); the investigated crystal only contains decacyclene rings with M chirality. The handedness can be ass…

Crystallographic point group010405 organic chemistryOrganic Chemistrychemistry.chemical_elementGeneral ChemistryTetramethylethylenediamineMolecular propeller010402 general chemistryRing (chemistry)01 natural sciencesCatalysis0104 chemical sciencesMetalchemistry.chemical_compoundNickelCrystallographychemistryvisual_artvisual_art.visual_art_mediumChirality (chemistry)CobaltChemistry (Weinheim an der Bergstrasse, Germany)
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Synthesis, Chirality, and Magnetic Properties of Bimetallic Cyanide-Bridged Two-Dimensional Ferromagnets

2006

The assembly of hexacyanoferrate(III) anions and nickel(II) bis-diamino complexes of the chiral ligand trans-cyclohexane-1,2-diamine (trans-chxn) yields cyanide-bridged two-dimensional ferromagnets of the general formula [Ni(trans-chxn)2]3[Fe(CN)6]2‚2H2O. Their crystal structure is built from cyanide-bridged bimetallic planes separated by the bulky chxn ligands, giving rise to a large interlayer distance ( d ) 11.7 A). These materials order ferromagnetically at the Curie temperature TC ) 14 K. AC susceptibility measurements evidence an unusual magnetic behavior below TC, with a marked frequency dependence. A thorough magnetic analysis demonstrates that this complex behavior is due to the pi…

CrystallographyMagnetic anisotropyDomain wall (magnetism)FerromagnetismChemistryGeneral Chemical EngineeringChiral ligandMaterials ChemistryCurie temperatureGeneral ChemistryCrystal structureChirality (chemistry)Bimetallic stripChemistry of Materials
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4,4,4′,4′,7,7′-Hexamethyl-2,2′-spirobichroman

2000

The title compound, C23H28O2, was obtained from the reaction of acetone with meta-cresol. The molecular structure consists of two identical subunits which are nearly perpendicular to each other. The oxygen-containing rings are not planar and the molecule is chiral. The crystal structure consists of chains of molecules of the same chirality arranged along the [010] axis.

CrystallographyPlanarBicyclic moleculeChemistryPerpendicularMoleculeGeneral MedicineCrystal structurePhysics::Chemical PhysicsChirality (chemistry)General Biochemistry Genetics and Molecular BiologyActa Crystallographica Section C Crystal Structure Communications
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Modification of Dzyaloshinskii-Moriya-Interaction-Stabilized Domain Wall Chirality by Driving Currents

2018

We measure and analyze the chirality of Dzyaloshinskii-Moriya-interaction (DMI) stabilized spin textures in multilayers of $\mathrm{Ta}|{\mathrm{Co}}_{20}{\mathrm{F}}_{60}{\mathrm{B}}_{20}|\mathrm{MgO}$. The effective DMI is measured experimentally using domain wall motion measurements, both in the presence (using spin-orbit torques) and absence of driving currents (using magnetic fields). We observe that the current-induced domain wall motion yields a change in effective DMI magnitude and opposite domain wall chirality when compared to field-induced domain wall motion (without current). We explore this effect, which we refer to as current-induced DMI, by providing possible explanations for…

Current (mathematics)Current-inducedGeneral Physics and AstronomyFOS: Physical sciencesSpin currents02 engineering and technology-01 natural sciencesMeasure (mathematics)Spin current0103 physical sciencesMesoscale and Nanoscale Physics (cond-mat.mes-hall)ddc:55022 Física010306 general physicsDomain Wall ChiralitySpin-½PhysicsCondensed matter physicsfísicaCondensed Matter - Mesoscale and Nanoscale PhysicsTheoretical predictionsPhysics021001 nanoscience & nanotechnologyMagnetic fieldDomain wall (magnetism)Dzyaloshinskii-Moriya-interaction (DMI)0210 nano-technologyChirality (chemistry)Field-induced domainDzyaloshinskii-Moriya-interaction
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Unprecedented Stereoselective Synthesis of Catalytically Active Chiral Mo3CuS4 Clusters

2005

Cluster excision of polymeric {Mo3S7Cl4}n phases with chiral phosphane (+)-1,2-bis[(2R,5R)-2,5-(dimethylphospholan-1-yl)]ethane ((R,R)-Me-BPE) or with its enantiomer ((S,S)-Me-BPE) yields the stereoselective formation of the trinuclear cluster complexes [Mo3S4{(R,R)-Me-BPE}3Cl3]+ ([(P)-1]+) and [Mo3S4{(S,S)-Me-BPE}3Cl3]+ ([(M)-1]+), respectively. These complexes possess an incomplete cuboidal structure with the metal atoms defining an equilateral triangle and one capping and three bridging sulfur atoms. The P and M symbols refer to the rotation of the chlorine atoms around the C3 axis, with the capping sulphur atom pointing towards the viewer. Incorporation of copper into these trinuclear c…

CyclopropanationStereochemistryOrganic ChemistryEnantioselective synthesisGeneral ChemistryMedicinal chemistryCatalysischemistry.chemical_compoundEthyl diazoacetatechemistryIntramolecular forceCluster (physics)DiphosphaneEnantiomerChirality (chemistry)Chemistry - A European Journal
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