Search results for "Mill"

showing 10 items of 950 documents

Pinch technique and the Batalin-Vilkovisky formalism

2002

In this paper we take the first step towards a non-diagrammatic formulation of the Pinch Technique. In particular we proceed into a systematic identification of the parts of the one-loop and two-loop Feynman diagrams that are exchanged during the pinching process in terms of unphysical ghost Green's functions; the latter appear in the standard Slavnov-Taylor identity satisfied by the tree-level and one-loop three-gluon vertex. This identification allows for the consistent generalization of the intrinsic pinch technique to two loops, through the collective treatment of entire sets of diagrams, instead of the laborious algebraic manipulation of individual graphs, and sets up the stage for the…

High Energy Physics - TheoryPhysicsNuclear and High Energy PhysicsBatalin–Vilkovisky formalismBackground field methodFOS: Physical sciencesFísicaYang–Mills theoryHigh Energy Physics - Phenomenologysymbols.namesakeHigh Energy Physics::TheoryHigh Energy Physics - Phenomenology (hep-ph)High Energy Physics - Theory (hep-th)PinchsymbolsFeynman diagramQuantum field theoryQuantumS-matrixMathematical physics
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Towards N=1 Super-Yang-Mills on the Lattice

1997

We consider the lattice regularization of N=1 supersymmetric Yang--Mills theory with Wilson fermions. This formulation breaks supersymmetry at any finite lattice spacing; we discuss how Ward identities can be used to define a supersymmetric continuum limit, which coincides with the point where the gluino becomes massless. As a first step towards the understanding of the zero gluino-mass limit, we present results on the quenched low-lying spectrum of SU(2) N=1 Super-Yang--Mills, at $\beta=2.6$ on a $V=16^3 \times 32$ lattice, in the OZI approximation. Our results, in spite of the quenched and OZI approximations, are in remarkable agreement with theoretical predictions in the supersymmetric t…

High Energy Physics - TheoryPhysicsNuclear and High Energy PhysicsGluinoHigh Energy Physics::LatticeHigh Energy Physics::PhenomenologyHigh Energy Physics - Lattice (hep-lat)FísicaFOS: Physical sciencesYang–Mills existence and mass gapParticle Physics - LatticeFermionSupersymmetryMassless particleHigh Energy Physics - PhenomenologyHigh Energy Physics::TheoryHigh Energy Physics - LatticeLattice constantHigh Energy Physics - Phenomenology (hep-ph)High Energy Physics - Theory (hep-th)Regularization (physics)Lattice (order)Mathematical physics
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Orientifold theory dynamics and symmetry breaking

2004

We show that it is possible to construct explicit models of electroweak symmetry breaking in which the number of techniflavors needed to enter the conformal phase of the theory is small and weakly dependent on the number of technicolors. Surprisingly, the minimal model with {\it just} two (techni)flavors, together with a suitable gauge dynamics, can be made almost conformal. The theories we consider are generalizations of orientifold type gauge theories, in which the fermions are in either two index symmetric or antisymmetric representation of the gauge group, as the underlying dynamics responsible for the spontaneous breaking of the electroweak symmetry. We first study their phase diagram,…

High Energy Physics - TheoryPhysicsNuclear and High Energy PhysicsParticle physicsSpontaneous symmetry breakingHigh Energy Physics::LatticeElectroweak interactionLattice field theoryHigh Energy Physics::PhenomenologyFOS: Physical sciencesTechnicolorSupersymmetryYang–Mills theoryHigh Energy Physics - PhenomenologyExplicit symmetry breakingTheoretical physicsHigh Energy Physics - Phenomenology (hep-ph)High Energy Physics - Theory (hep-th)Symmetry breaking
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THE PARISI–SOURLAS MECHANISM IN YANG–MILLS THEORY?

1999

The Parisi-Sourlas mechanism is exhibited in pure Yang-Mills theory. Using the new scalar degrees of freedom derived from the non-linear gauge condition, we show that the non-perturbative sector of Yang-Mills theory is equivalent to a 4D O(1,3) sigma model in a random field. We then show that the leading term of this equivalent theory is invariant under supersymmetry transformations where (x^{2}+\thetabar\theta) is unchanged. This leads to dimensional reduction proving the equivalence of the non-perturbative sector of Yang-Mills theory to a 2D O(1,3) sigma model.

High Energy Physics - TheoryPhysicsNuclear and High Energy PhysicsRandom fieldSigma modelHigh Energy Physics::LatticeHigh Energy Physics::PhenomenologyFOS: Physical sciencesAstronomy and AstrophysicsSupersymmetryYang–Mills theoryInvariant (physics)Atomic and Molecular Physics and OpticsHigh Energy Physics::TheoryNonlinear systemHigh Energy Physics - Theory (hep-th)Dimensional reductionEquivalence (measure theory)Mathematical physicsInternational Journal of Modern Physics A
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Twistor transform inddimensions and a unifying role for twistors

2005

Twistors in four dimensions d=4 have provided a convenient description of massless particles with any spin, and this led to remarkable computational techniques in Yang-Mills field theory. Recently it was shown that the same d=4 twistor provides also a unified description of an assortment of other particle dynamical systems, including special examples of massless or massive particles, relativistic or non-relativistic, interacting or non-interacting, in flat space or curved spaces. In this paper, using 2T-physics as the primary theory, we derive the general twistor transform in d-dimensions that applies to all cases, and show that these more general twistor transforms provide d dimensional ho…

High Energy Physics - TheoryPhysicsNuclear and High Energy PhysicsSpacetimeFOS: Physical sciencesYang–Mills theorySpace (mathematics)ModuliTwistor theoryHigh Energy Physics::TheoryHigh Energy Physics - Theory (hep-th)Phase spaceMinkowski spaceTwistor spaceMathematics::Differential GeometryMathematical physicsPhysical Review D
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Compact Multigluonic Scattering Amplitudes with Heavy Scalars and Fermions

2006

Combining the Berends-Giele and on-shell recursion relations we obtain an extremely compact expression for the scattering amplitude of a complex scalar-antiscalar pair and an arbitrary number of positive helicity gluons. This is one of the basic building blocks for constructing other helicity configurations from recursion relations. We also show explicity that the all positive helicity gluons amplitude for heavy fermions is proportional to the scalar one, confirming in this way the recently advocated SUSY-like Ward identities relating both amplitudes.

High Energy Physics - TheoryPhysicsQuantum chromodynamicsHigh Energy Physics::LatticeHigh Energy Physics::PhenomenologyScalar (mathematics)FOS: Physical sciencesFísicaGeneral Physics and AstronomyYang–Mills theorySupersymmetryFermionHelicityScattering amplitudeHigh Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)AmplitudeHigh Energy Physics - Theory (hep-th)Quantum electrodynamicsMathematical physicsPhysical Review Letters
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Ghost propagator and ghost-gluon vertex from Schwinger-Dyson equations

2013

We study an approximate version of the Schwinger-Dyson equation that controls the nonperturbative behavior of the ghost-gluon vertex in the Landau gauge. In particular, we focus on the form factor that enters in the dynamical equation for the ghost dressing function, in the same gauge, and derive its integral equation, in the "one-loop dressed" approximation. We consider two special kinematic configurations, which simplify the momentum dependence of the unknown quantity; in particular, we study the soft gluon case and the well-known Taylor limit. When coupled with the Schwinger-Dyson equation of the ghost dressing function, the contribution of this form factor provides considerable support …

High Energy Physics - TheoryQuantum chromodynamicsPhysicsNuclear and High Energy PhysicsHigh Energy Physics::LatticeHigh Energy Physics - Lattice (hep-lat)High Energy Physics::PhenomenologyPropagatorFOS: Physical sciencesFísicaKinematicsYang–Mills theoryIntegral equationGluonVertex (geometry)High Energy Physics - PhenomenologyHigh Energy Physics::TheoryHigh Energy Physics - LatticeHigh Energy Physics - Phenomenology (hep-ph)Yang-mills theoryHigh Energy Physics - Theory (hep-th)Lattice (order)Quantum ChromodynamicsMathematical physics
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Investigation of the effect of intensive milling in a planetary ball mill on the thermal decomposition of basic nickel carbonate

2011

The kinetics of thermal decomposition of basic nickel carbonate NiCO3Ni?(OH)2?nH2O and the effect of intensive milling in a planetary ball mill on its parameters, have been investigated. The values of the reaction heat and of the activation energy of thermal decomposition have been determined. Investigations of the thermal decomposition of the products of ball milling of investigated compound revealed a distinct effect of milling on the reaction temperature and heat consumed during the thermal decomposition of investigated compound.

High Energy Physics::TheoryHistoryMaterials scienceReaction temperatureMetallurgyThermal decompositionKineticsNickel CarbonateActivation energyBall millComputer Science ApplicationsEducationJournal of Physics: Conference Series
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Experimental investigation and multi-scale modelling of the behavior of mechanically activated metallic powders : from binary systems to High Entropy…

2021

Generally, metal alloys consist of a main element associated with other elements present in smaller quantities such as iron, nickel, aluminum or copper alloys. The precise composition of an alloy is adjusted according to the required performance: high temperature behavior, corrosion resistance, mechanical properties, durability ... In 2004, a Taiwanese scientist, JW Yeh, had the idea of making an alloy base of several elements, at least 5, whose composition in the alloy varies between 5% and 30% at. Yeh invented the high entropy alloy (HEA). Mixed on a microscopic scale, the metals form a remarkably stable solid solution. The explanation is thermodynamic. An alloy is all the more stable as …

High energy ball millingMechanical activationMétallurgie des poudresPowder metallurgy[CHIM.OTHE] Chemical Sciences/OtherDynamique moléculaireFrittage SPSSPS sinteringHigh entropy alloysMolecular DynamicsBroyage à haute énergieActivation mécaniqueAlliages à haute entropie
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Microstructure-process relationship and reactivity at the nanoscale : a molecular dynamics study of Ni, Ni-Al, and Ti-Al metallic systems

2023

The process-microstructure relationship is central in materials science because the microstructure will determine the properties of the materials developed by the processes. In our work, we focused on different metallurgical processes by adopting a description at the atomic scale. This approach allows us to detect the elementary mechanisms that are at the origin of the observed microstructures without having to postulate macroscopic mechanisms or estimate the associated parameters. In this respect, molecular dynamics simulations provide a tool for "in-situ" observation of metallic systems as long as an atomic interaction potential is available. The originality of our approach consists in mo…

High energy ball milling[CHIM.THEO] Chemical Sciences/Theoretical and/or physical chemistrySolidificationFabrication additiveAdditive manufacturingModélisationDynamique moléculaireReactivityRéactivitéMolecular dynamicsBroyage à haute énergieModelling
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