Search results for "control systems"

showing 10 items of 590 documents

Correlation effects in the total energy, the bulk modulus, and the lattice constant of a transition metal: Combined local-density approximation and d…

2009

We present an accurate implementation of total-energy calculations into the local-density approximation plus dynamical mean-field theory $(\text{LDA}+\text{DMFT})$ method. The electronic structure problem is solved through the full-potential linear muffin-tin orbital and Korringa-Kohn-Rostoker methods with a perturbative solver for the effective impurity suitable for moderately correlated systems. We have tested the method in detail for the case of Ni, and investigated the sensitivity of the results to the computational scheme and to the complete self-consistency. It is demonstrated that the $\text{LDA}+\text{DMFT}$ method can resolve a long-standing controversy between the LDA/generalized …

PhysicsBulk modulusCondensed matter physicsElectronic structureSolverCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsCondensed Matter::Materials ScienceLattice constantImpurityQuantum mechanicsCondensed Matter::Strongly Correlated ElectronsStrongly correlated materialSensitivity (control systems)Local-density approximationPhysical Review B
researchProduct

The <FONT FACE=Symbol>d</font> Expansion and the Principle of Minimal Sensitivity

1998

The d-expansion is a nonperturbative approach for field theoretic models wich combines the techniques of perturbation theory and the variational principle. Different ways of implemeting the principle of minimal sensitivity to the d-expansion produce in general different results for observables. For illustration we use the Nambu- Jona-Lasinio model for chiral symmetry restoration at finite density and compare results with those obtained with the Hartree-Fock approximation.

PhysicsChiral symmetryField (physics)Variational principleHigh Energy Physics::LatticeQuantum electrodynamicsNuclear TheoryHigh Energy Physics::PhenomenologyGeneral Physics and AstronomyApplied mathematicsObservablePerturbation theory (quantum mechanics)Sensitivity (control systems)Brazilian Journal of Physics
researchProduct

Spin-orbit torques in strained PtMnSb from first principles

2021

We compute spin-orbit torques (SOTs) in strained PtMnSb from first principles. We consider both tetragonal strain and shear strain. We find a strong linear dependence of the field-like SOTs on these strains, while the antidamping SOT is only moderately sensitive to shear strain and even insensitive to tetragonal strain. We also study the dependence of the SOT on the magnetization direction. In order to obtain analytical expressions suitable for fitting our numerical \textit{ab-initio} results we derive a general expansion of the SOT in terms of all response tensors that are allowed by crystal symmetry. Our expansion includes also higher-order terms beyond the usually considered lowest order…

PhysicsCondensed Matter - Materials ScienceCondensed matter physicsStrain (chemistry)Ab initioMaterials Science (cond-mat.mtrl-sci)FOS: Physical sciences02 engineering and technology021001 nanoscience & nanotechnology01 natural sciencesMagnetizationTetragonal crystal systemCondensed Matter::Materials Science0103 physical sciencesOrbit (dynamics)Shear stressAstrophysics::Solar and Stellar Astrophysicsddc:530Sensitivity (control systems)010306 general physics0210 nano-technologySpin-½
researchProduct

Robust non-Markovianity in ultracold gases

2012

We study the effect of thermal fluctuations on a probe qubit interacting with a Bose-Einstein condensed (BEC) reservoir. The zero-temperature case was studied in [Haikka P et al 2011 Phys. Rev. A 84 031602], where we proposed a method to probe the effects of dimensionality and scattering length of a BEC based on its behavior as an environment. Here we show that the sensitivity of the probe qubit is remarkably robust against thermal noise. We give an intuitive explanation for the thermal resilience, showing that it is due to the unique choice of the probe qubit architecture of our model.

PhysicsCondensed Matter::Quantum GasesWork (thermodynamics)Quantum PhysicsCold Atoms Open Quantum System Markovian Master equations/dk/atira/pure/subjectarea/asjc/3100/3107/dk/atira/pure/subjectarea/asjc/3100/3104Thermal fluctuationsFOS: Physical sciencesScattering lengthPhysics and Astronomy(all)Condensed Matter PhysicsSettore FIS/03 - Fisica Della MateriaAtomic and Molecular Physics and Optics/dk/atira/pure/subjectarea/asjc/3100Quantum Gases (cond-mat.quant-gas)Quantum mechanicsQubitThermalSensitivity (control systems)Condensed Matter - Quantum Gases/dk/atira/pure/subjectarea/asjc/2600/2610Quantum Physics (quant-ph)Mathematical PhysicsCurse of dimensionality
researchProduct

Amplitude- and truncated partial-wave analyses combined: A single-channel method for extracting photoproduction multipoles directly from measured data

2020

Amplitude- and truncated partial-wave analyses are combined into a single-channel method for extracting multipoles directly from measured data. In practice, we have created a two-step procedure which is fit to the same database: in the first step we perform an energy-independent amplitude analysis where continuity is achieved by constraining the amplitude phase, and the result of this first step is then taken as a constraint for the second step where a constrained, energy-independent, truncated partial-wave analysis is done. The method is tested on the world collection of data for $\ensuremath{\eta}$ photoproduction, and the obtained fit results are very good. The sensitivity to different p…

PhysicsConstraint (information theory)AmplitudeChannel (digital image)010308 nuclear & particles physics0103 physical sciencesMathematical analysisPhase (waves)Sensitivity (control systems)010306 general physics01 natural sciencesNuclear theoryPhysical Review C
researchProduct

Sensitivity of Measurement-Based Purification Processes to Inner Interactions

2017

The sensitivity of a repeated measurement-based purification scheme to additional undesired couplings is analyzed, focusing on the very simple and archetypical system consisting of two two-level systems interacting with a repeatedly measured one. Several regimes are considered and in the strong coupling (i.e., when the coupling constant of the undesired interaction is very large) the occurrence of a quantum Zeno effect is proven to dramatically jeopardize the efficiency of the purification process.

PhysicsCoupling constantQuantum PhysicspurificationFOS: Physical sciencesCondensed Matter Physics01 natural sciencesAtomic and Molecular Physics and OpticsSettore FIS/03 - Fisica Della Materia010305 fluids & plasmas0103 physical sciencesStrong couplingSensitivity (control systems)quantum Zeno effect010306 general physicsBiological systementanglementQuantum Physics (quant-ph)Mathematical PhysicsQuantum Zeno effect
researchProduct

Measuring anomalous couplings inH→WW*decays at the International Linear Collider

2013

The measurement of the Higgs coupling to $W$ bosons is an important test of our understanding of the electroweak symmetry-breaking mechanism. We study the sensitivity of the International Linear Collider (ILC) to the presence of anomalous $H{W}^{+}{W}^{\ensuremath{-}}$ couplings using $ZH\ensuremath{\rightarrow}\ensuremath{\nu}\overline{\ensuremath{\nu}}W{W}^{*}\ensuremath{\rightarrow}\ensuremath{\nu}\overline{\ensuremath{\nu}}4j$ events. Using an effective Lagrangian approach, we calculate the differential decay rates of the Higgs boson including the effects of new dimension-five operators. We present a Monte Carlo simulation of events at the ILC, using a full detector simulation based on …

PhysicsCouplingNuclear and High Energy PhysicsParticle physicsLarge Hadron ColliderInternational Linear ColliderHigh Energy Physics::PhenomenologyElectroweak interactionMonte Carlo methodNuclear physicsHiggs bosonHigh Energy Physics::ExperimentSensitivity (control systems)BosonPhysical Review D
researchProduct

Dispersion relations applied to double-folding potentials from chiral effective field theory

2020

We present a determination of optical potentials using the double-folding method based on chiral effective field theory nucleon-nucleon interactions at next-to-next-to-leading order combined with dispersion relations to constrain the imaginary part. This approach is benchmarked on O16-O16 collisions, and extended to the C12-C12 and C12-O16 cases. Predictions derived from these potentials are compared to data for elastic scattering at energies up to 1000 MeV, as well as for fusion at low energy. Without adjusting parameters, excellent agreement with experiment is found. In addition, we study the sensitivity of the corresponding cross sections to the nucleon-nucleon interactions and nuclear d…

PhysicsElastic scattering010308 nuclear & particles physicsNuclear TheoryStarke Wechselwirkung und exotische Kerne – Abteilung BlaumOrder (ring theory)Généralités7. Clean energy01 natural sciencesPhysique atomique et nucléaireFolding (chemistry)Low energyDispersion relation0103 physical sciencesEffective field theorySensitivity (control systems)Atomic physicsNuclear Experiment010306 general physicsNuclear theoryPhysical Review C
researchProduct

Sensitivity of Th229 nuclear clock transition to variation of the fine-structure constant

2020

Peik and Tamm [Europhys. Lett. 61, 181 (2003)] proposed a nuclear clock based on the isomeric transition between the ground state and the first excited state of thorium-229. This transition was recognized as a potentially sensitive probe of possible temporal variation of the fine-structure constant, $\ensuremath{\alpha}$. The sensitivity to such a variation can be determined from measurements of the mean-square charge radius and quadrupole moment of the different isomers. However, current measurements of the quadrupole moment are yet to achieve an accuracy high enough to resolve nonzero sensitivity. Here we determine this sensitivity using existing measurements of the change in the mean-squ…

PhysicsFine-structure constant01 natural sciences010305 fluids & plasmasCharge radiusExcited state0103 physical sciencesQuadrupoleSensitivity (control systems)Atomic physics010306 general physicsGround stateNuclear densityAnsatzPhysical Review A
researchProduct

Prospects of Jet Tomography Using Hard Processes inside a Soft Medium

2008

The term ’tomography’ is commonly applied to the idea of studying properties of a medium by the modifications this medium induces to a known probe propagating through it. In the context of ultrarelativistic heavy-ion collisions, rare high transverse momentum (pT ) processes taking place alongside soft bulk-matter production can be viewed as a tomographic probe as long as the energy scales are such that the modification of high pT processes can be dominantly ascribed to interactions with the medium during the propagation of partons. Various high pT observables have been suggested for tomography, among them hard single hadron suppression, dihadron correlations and γ-hadron correlations. In th…

PhysicsHadronTransverse momentumObservablePartonContext (language use)Sensitivity (control systems)TomographyJet (particle physics)Nuclear ExperimentComputational physicsProceedings of High-pT physics at LHC — PoS(LHC07)
researchProduct