Search results for "Pinch"

showing 10 items of 27 documents

Jet stability and the generation of superluminal and stationary components

2001

We present a numerical simulation of the response of an expanding relativistic jet to the ejection of a superluminal component. The simulation has been performed with a relativistic time-dependent hydrodynamical code from which simulated radio maps are computed by integrating the transfer equations for synchrotron radiation. The interaction of the superluminal component with the underlying jet results in the formation of multiple conical shocks behind the main perturbation. These trailing components can be easily distinguished because they appear to be released from the primary superluminal component, instead of being ejected from the core. Their oblique nature should also result in distinc…

PhysicsBrightnessSuperluminal motionComputer simulation010308 nuclear & particles physicsAstrophysics::High Energy Astrophysical PhenomenaAstrophysics (astro-ph)Synchrotron radiationPerturbation (astronomy)FOS: Physical sciencesAstronomy and AstrophysicsAstrophysicsConical surfaceMechanicsPolarization (waves)Astrophysics01 natural sciencesSpace and Planetary Science0103 physical sciencesPinch010303 astronomy & astrophysics
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Edge pinch instability of liquid metal sheet in a transverse high-frequency AC magnetic field

2006

We analyze the linear stability of the edge of a thin liquid metal layer subject to a transverse high-frequency AC magnetic field. The layer is treated as a perfectly conducting liquid sheet that allows us to solve the problem analytically for both a semi-infinite geometry with a straight edge and a thin disk of finite radius. It is shown that the long-wave perturbations of a straight edge are monotonically unstable when the wave number exceeds some critical value $k_c,$ which is determined by the surface tension and the linear density of the electromagnetic force acting on the edge. The higher the density of electromagnetic force, the shorter the critical wavelength. The perturbations with…

PhysicsCondensed matter physicsFluid Dynamics (physics.flu-dyn)FOS: Physical sciences[CHIM.MATE]Chemical Sciences/Material chemistryPhysics - Fluid DynamicsCritical value01 natural sciencesInstability010305 fluids & plasmasMagnetic fieldWavelengthAmplitudeThin disk0103 physical sciencesPinch[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process Engineering010306 general physicsLinear stability
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Standard model higher order corrections to the WW gamma/WWZ vertex

1995

Using the S--matrix pinch technique we obtain to one loop order gauge independent $\gamma W^-W^+$ and $Z W^-W^+$ vertices in the context of the standard model, with all incoming momenta off--shell. We show that the vertices so constructed satisfy simple QED--like Ward identities. These gauge invariant vertices give rise to expressions for the magnetic dipole and electric quadrupole form factors of the $W$ gauge boson, which, unlike previous treatments, satisfy the crucial properties of infrared finiteness and perturbative unitarity.

PhysicsGauge bosonParticle physicsUnitarityHigh Energy Physics::LatticeHigh Energy Physics::PhenomenologyFísica020206 networking & telecommunications02 engineering and technologyVertex (geometry)High Energy Physics - PhenomenologyQuadrupole0202 electrical engineering electronic engineering information engineeringPinch020201 artificial intelligence & image processingMagnetic dipole
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The internal structure of overpressured, magnetized, relativistic jets

2016

This work presents the first characterization of the internal structure of overpressured steady superfast magnetosonic relativistic jets in connection with their dominant type of energy. To this aim, relativistic magnetohydrodynamic simulations of different jet models threaded by a helical magnetic field have been analyzed covering a wide region in the magnetosonic Mach number - specific internal energy plane. The merit of this plane is that models dominated by different types of energy (internal energy: hot jets; rest-mass energy: kinetically dominated jets; magnetic energy: Poynting-flux dominated jets) occupy well separated regions. The analyzed models also cover a wide range of magnetiz…

PhysicsHigh Energy Astrophysical Phenomena (astro-ph.HE)Jet (fluid)Internal energyMagnetic energy010308 nuclear & particles physicsAstrophysics::High Energy Astrophysical PhenomenaFOS: Physical sciencesAstronomy and AstrophysicsKinetic energy01 natural sciencesComputational physicsMagnetic fieldLorentz factorsymbols.namesakeAstrophysical jetSpace and Planetary Science0103 physical sciencesPinchsymbolsAstrophysics - High Energy Astrophysical Phenomena010303 astronomy & astrophysics
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Gauge invariance and unstable particles.

1995

A gauge-independent approach to resonant transition amplitudes with nonconserved external currents is presented, which is implemented by the pinch technique. The analytic expressions derived with this method are $U(1)_{em}$ invariant, independent of the choice of the gauge-fixing parameter, and satisfy a number of required theoretical properties, including unitarity. Although special attention is paid to resonant scatterings involving the $\gamma WW$ and $ZWW$ vertices in the minimal Standard Model, our approach can be extended to the top quark or other unstable particles appearing in renormalizable models of new physics.

PhysicsHigh Energy Physics - TheoryUnitarityComputer Science::Information RetrievalElectroweak interactionHigh Energy Physics::PhenomenologyGeneral Physics and AstronomyFOS: Physical sciencesFísicaFeynman graphInvariant (physics)Scattering amplitudeHigh Energy Physics - PhenomenologyAmplitudeHigh Energy Physics - Phenomenology (hep-ph)High Energy Physics - Theory (hep-th)Quantum mechanicsPinchGauge theoryMathematical physicsPhysical review letters
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New Schwinger-Dyson equations for non-Abelian gauge theories

2008

We show that the application of the pinch technique to the conventional Schwinger-Dyson equations for the gluon propagator, gluon-quark vertex, and three-gluon vertex, gives rise to new equations endowed with special properties. The new series coincides with the one obtained in the Feynman gauge of the background field method, thus capturing the extensive gauge cancellations implemented by the pinch technique at the level of individual Green's functions. Its building blocks are the fully dressed pinch technique Green's functions obeying Abelian all-order Ward identities instead of the Slavnov-Taylor identites satisfied by their conventional counterparts. As a result, and contrary to the sta…

PhysicsNuclear and High Energy PhysicsParticle physicsBackground field methodHigh Energy Physics::LatticeHigh Energy Physics::PhenomenologyFísicaPropagatorFOS: Physical sciencesGluonsymbols.namesakeFormalism (philosophy of mathematics)High Energy Physics - PhenomenologyHigh Energy Physics::TheoryHigh Energy Physics - Phenomenology (hep-ph)PinchsymbolsFeynman diagramGauge theoryAbelian groupMathematical physics
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On dynamical gluon mass generation

2007

The effective gluon propagator constructed with the pinch technique is governed by a Schwinger-Dyson equation with special structure and gauge properties, that can be deduced from the correspondence with the background field method. Most importantly the non-perturbative gluon self-energy is transverse order-by-order in the dressed loop expansion, and separately for gluonic and ghost contributions, a property which allows for a meanigfull truncation. A linearized version of the truncated Schwinger-Dyson equation is derived, using a vertex that satisfies the required Ward identity and contains massless poles. The resulting integral equation, subject to a properly regularized constraint, is so…

PhysicsNuclear and High Energy PhysicsParticle physicsBackground field methodHigh Energy Physics::LatticeMass generationHigh Energy Physics::PhenomenologyFísicaFOS: Physical sciencesPropagatorIntegral equationGluonVertex (geometry)Massless particleHigh Energy Physics::TheoryHigh Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)PinchMathematical physics
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The effective neutrino charge radius in the presence of fermion masses

2005

Abstract We show how the crucial gauge cancellations leading to a physical definition of an effective neutrino charge radius persist in the presence of non-vanishing fermion masses. An explicit one-loop calculation demonstrates that, as happens in the massless case, the pinch technique rearrangement of the Feynman amplitudes, together with the judicious exploitation of the fundamental current relation J α ( 3 ) = 2 ( J Z + sin θ w 2 J γ ) α , leads to a completely gauge independent definition of the effective neutrino charge radius. Using the formalism of the Nielsen identities it is further proved that the same cancellation mechanism operates unaltered to all orders in perturbation theory.

PhysicsNuclear and High Energy PhysicsParticle physicsHigh Energy Physics::PhenomenologyVertex functionFísicaFermionMassless particlesymbols.namesakeAmplitudeCharge radiusQuantum electrodynamicssymbolsPinchFeynman diagramNeutrino
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Two-loop pinch technique in the electroweak sector

2002

The generalization of the two-loop Pinch Technique to the Electroweak Sector of the Standard Model is presented. We restrict ourselves to the case of conserved external currents, and provide a detailed analysis of both the charged and neutral sectors. The crucial ingredient for this construction is the identification of the parts discarded during the pinching procedure with well-defined contributions to the Slavnov-Taylor identity satisfied by the off-shell one-loop gauge-boson vertices; the latter are nested inside the conventional two-loop self-energies. It is shown by resorting to a set of powerful identities that the two-loop effective Pinch Technique self-energies coincide with the cor…

PhysicsNuclear and High Energy PhysicsPhotonElectroweak interactionFísicaFOS: Physical sciencesHigh Energy Physics - PhenomenologyTheoretical physicssymbols.namesakeFormalism (philosophy of mathematics)High Energy Physics - Phenomenology (hep-ph)symbolsBibliographyPinchFeynman diagramS-matrixMathematical physicsPhysical Review D
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Connection between the pinch technique and the background field method

1995

The connection between the pinch technique and the background field method is further explored. We show by explicit calculations that the application of the pinch technique in the framework of the background field method gives rise to exactly the same results as in the linear renormalizable gauges. The general method for extending the pinch technique to the case of Green's functions with off-shell fermions as incoming particles is presented. As an example, the one-loop gauge independent quark self-energy is constructed. We briefly discuss the possibility that the gluonic Green's functions, obtained by either method, correspond to physical quantities.

PhysicsWilson loop010308 nuclear & particles physicsBackground field methodHigh Energy Physics::LatticeHigh Energy Physics::PhenomenologyFOS: Physical sciencesFísicaPropagator01 natural sciencesHigh Energy Physics - Phenomenologysymbols.namesakeHigh Energy Physics - Phenomenology (hep-ph)Self-energyQuantum electrodynamics0103 physical sciencesPinchsymbolsFeynman diagram010306 general physicsS-matrixPhysical quantityPhysical Review D
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