Search results for "fluid"

showing 10 items of 5513 documents

Intrinsic quantum chaos and spectral fluctuations within the protactinium atom

2018

Physicschemistry0103 physical sciencesProtactiniumchemistry.chemical_elementAtom (order theory)Atomic physics010306 general physics01 natural sciencesQuantum chaos010305 fluids & plasmasPhysical Review A
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Rydberg and autoionizing states of tellurium studied by laser resonance ionization spectroscopy

2019

Multistep laser-resonance-ionization spectroscopy of tellurium (Te) has been performed at TRIUMF's off-line laser ion source test stand. Six clean and regular even-parity Rydberg series $5{p}^{3}$ $({^{4}S}_{3/2}^{\ensuremath{\circ}})$ $np\phantom{\rule{4pt}{0ex}}^{3}P_{0,1,2}$, $np\phantom{\rule{4pt}{0ex}}^{5}P_{1,2}$, and $nf\phantom{\rule{4pt}{0ex}}^{3}F_{2}/^{5}F_{1,2}$ were observed. The ionization potential of Te was extracted from the measured series as $72669.114{(56)}_{\mathrm{stat}}{(45)}_{\mathrm{sys}}\phantom{\rule{4pt}{0ex}}{\mathrm{cm}}^{\ensuremath{-}1}$. Excited from two different intermediate levels, seven odd-parity autoionization Rydberg series converging to the $5{s}^{2}…

Physicschemistry.chemical_element01 natural sciences3. Good health010305 fluids & plasmassymbols.namesakechemistryAutoionizationExcited stateIonization0103 physical sciencesRydberg formulasymbolsLaser resonanceAtomic physicsIonization energy010306 general physicsSpectroscopyTelluriumPhysical Review A
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High-momentum tails as magnetic-structure probes for strongly correlatedSU(κ)fermionic mixtures in one-dimensional traps

2016

A universal ${k}^{\ensuremath{-}4}$ decay of the large-momentum tails of the momentum distribution, fixed by Tan's contact coefficients, constitutes a direct signature of strong correlations in a short-range interacting quantum gas. Here we consider a repulsive multicomponent Fermi gas under harmonic confinement, as in the experiment of G. Pagano et al. [Nat. Phys. 10, 198 (2014)], realizing a gas with tunable $\text{SU}(\ensuremath{\kappa})$ symmetry. We exploit an exact solution at infinite repulsion to show a direct correspondence between the value of the Tan's contact for each of the $\ensuremath{\kappa}$ components of the gas and the Young tableaux for the ${S}_{N}$ permutation symmetr…

Physicseducation.field_of_studyCondensed matter physicsEquation of state (cosmology)PopulationSymmetry group7. Clean energy01 natural sciencesVirial theorem010305 fluids & plasmasMomentumExact solutions in general relativityQuantum mechanics0103 physical sciences010306 general physicseducationGround stateFermi gasPhysical Review A
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Quantum Sensors Assisted by Spontaneous Symmetry Breaking for Detecting Very Small Forces

2015

We propose a quantum-sensing scheme for measuring weak forces based on a symmetry-breaking adiabatic transition in the quantum Rabi model. We show that the system described by the Rabi Hamiltonian can serve as a sensor for extremely weak forces with sensitivity beyond the yoctonewton (yN) per sqrt (Hz) range. We propose an implementation of this sensing protocol using a single trapped ion. A major advantage of our scheme is that the force detection is performed by projective measurement of the population of the spin states at the end of the transition, instead of the far slower phonon number measurement used hitherto.

Physicseducation.field_of_studyPhononSpontaneous symmetry breakingPopulationQuantum sensorGeneral Physics and AstronomyWeak interaction01 natural sciences010305 fluids & plasmassymbols.namesakeQuantum mechanics0103 physical sciencessymbols010306 general physicseducationHamiltonian (quantum mechanics)Adiabatic processQuantumQCPhysical Review Applied
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A new method in investigations of bubble cluster shapes in two-phase flow

1991

Abstract In this paper a new probabilistic method is used to analyse the distribution of air bubbles in two-phase flow. So far, the method has been applied in astronomy and cosmology to investigate the distribution of galaxies. The basic idea is presented and the method applied to the photographed population of air bubbles in a liquid. The method allows the homogeneity of the flow to be evaluated qualitatively and quantitatively.

Physicseducation.field_of_studyProcess Chemistry and TechnologyGeneral Chemical EngineeringBubbleHomogeneity (statistics)PopulationEnergy Engineering and Power TechnologyMineralogyGeneral ChemistryMechanicsIndustrial and Manufacturing EngineeringCosmologyPhysics::Fluid DynamicsProbabilistic methodFlow (mathematics)Cluster (physics)Two-phase floweducationChemical Engineering and Processing: Process Intensification
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Non-equilibrium temperature of well-developed quantum turbulence

2009

Abstract A non-equilibrium effective temperature of quantum vortex tangles is defined as the average energy of closed vortex loops. The resulting thermodynamic expressions for the entropy and the energy in terms of the temperature of the tangle are confirmed by a microscopic analysis based on a potential distribution function for the length of vortex loops. Furthermore, these expressions for the entropy and energy in terms of temperature are analogous to those of black holes: this may be of interest for establishing further connections between topological defects in superfluids and cosmology.

Physicsfractal dimensionnon equilibrium thermodynamicThermodynamic equilibriumQuantum vortexQuantum turbulenceGeneral Physics and AstronomyNon-equilibrium thermodynamicssuperfluid turbulenceVortexTopological defectSuperfluidityDistribution functionClassical mechanicsQuantum mechanicsSettore MAT/07 - Fisica Matematicavortice
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Development and Function of the Spiral Canlicular System

1965

The canalicular spiral system derives from the epithelium of the outer spiral sulcus and extends towards the prominence and the spiral ligament. The comparison between the development of the canalicular spiral system and that of other cochlear structures induces the author to con-firm what he suggested in 1949 about the secreting modality of the cochlear endolymph.

Physicsgenetic structuresEndolymphGeneral MedicineAnatomydigestive systemfluids and secretionsmedicine.anatomical_structureOtorhinolaryngologySpiral ligamentotorhinolaryngologic diseasesmedicinesense organsSpiralOuter spiral sulcusActa Oto-Laryngologica
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Experimental studies of a single flexibly-mounted rod in a triangular rod bundle in cross-flow

2018

Experiments on flow-induced vibrations using a closely-packed triangular rod array with a pitch-todiameter ratio of 1.1 in water cross-flow was carried out at Paul Scherrer Institute. The bundle consists of 21 row of five rods in each one. Single flexibly-mounted test rod (TR) is in the fourth row in an otherwise fixed array. The test rod can freely move in the transverse and in-line direction. Two accelerometer sensors were attached at both ends of the TR to measure the rod response on the fluid flow. The effect of flow rate on the stability of the flexibly-mounted TR has been analysed. During experiments, it reveals a set of conditions and tendencies for the flow-induced vibration in the …

Physicsgenetic structuresMechanicsAccelerometerRodVolumetric flow rateVibrationTransverse planeFlow (mathematics)lcsh:TA1-2040BundleFluid dynamicssense organslcsh:Engineering (General). Civil engineering (General)MATEC Web of Conferences
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Piezoelectric Actuated Nonlinear Energy Sink With Tunable Attenuation Efficiency

2019

Abstract Comparing to linear vibration absorbers, nonlinear energy sinks (NESs) have attracted worldwide attention for their intrinsic characteristics of targeted energy transfer or energy pumping in a relatively wide frequency range. Unfortunately, they are highly dependent on the vibration amplitude to be attenuated and will play its role only if the external load exceeds a specific threshold value. Different from the passive bistable NES, a novel piezoelectric nonlinear energy sink (PNES) is designed by introducing in-phase actuation to compensate or enhance the external vibration loads, thus triggering the NES operating in high attenuation efficiency. The nonlinear mathematic model of t…

Physicsgeographygeography.geographical_feature_categoryCantileverbusiness.industryMechanical EngineeringAttenuationCondensed Matter Physics01 natural sciencesPiezoelectricitySink (geography)010305 fluids & plasmasNonlinear systemMechanics of Materials0103 physical sciencesOptoelectronicsbusiness010301 acousticsExcitationJournal of Applied Mechanics
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Theoretical Studies of the Propagation of Sound in Channels Filled with Helium II

1974

The two-fluid nature of liquid helium II leads to the possibility of several types of wave motion, e.g., first sound, second sound, fourth sound, and the fifth wave mode. First and second sound appear in the bulk liquid. The characters of these wave modes alter materially if helium is bounded by solid walls, e.g., between two plane-parallel plates forming a channel. This paper reports upon the calculation of the properties of wave modes which can exist in such channels.

Physicsgeographygeography.geographical_feature_categoryLiquid heliumAcousticschemistry.chemical_elementAcoustic wavelaw.inventionPhysics::Fluid DynamicschemistrylawSpeed of soundBounded functionSecond soundSound (geography)HeliumCommunication channel
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