Search results for "010303 astronomy & astrophysics"

showing 10 items of 1094 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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DR Tauri: Temporal variability of the brightness distribution in the potential planet-forming region

2015

We investigate the variability of the brightness distribution and the changing density structure of the protoplanetary disk around DR Tau, a classical T Tauri star. DR Tau is known for its peculiar variations from the ultraviolet (UV) to the mid-infrared (MIR). Our goal is to constrain the temporal variation of the disk structure based on photometric and MIR interferometric data. We observed DR Tau with the MID-infrared Interferometric instrument (MIDI) at the Very Large Telescope Interferometer (VLTI) at three epochs separated by about nine years, two months, respectively. We fit the spectral energy distribution and the MIR visibilities with radiative transfer simulations. We are able to r…

PhysicsBrightnessVery Large Telescope010504 meteorology & atmospheric sciencesEpoch (reference date)FOS: Physical sciencesAstronomy and AstrophysicsScale heightAstrophysics::Cosmology and Extragalactic AstrophysicsAstrophysicsProtoplanetary disk01 natural sciencesT Tauri starAstrophysics - Solar and Stellar AstrophysicsSpace and Planetary Science0103 physical sciencesRadiative transferAstrophysics::Solar and Stellar AstrophysicsSpectral energy distributionAstrophysics::Earth and Planetary Astrophysics010303 astronomy & astrophysicsSolar and Stellar Astrophysics (astro-ph.SR)Astrophysics::Galaxy Astrophysics0105 earth and related environmental sciencesAstronomy & Astrophysics
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Toward early-warning detection of gravitational waves from compact binary coalescence

2012

Rapid detection of compact binary coalescence (CBC) with a network of advanced gravitational-wave detectors will offer a unique opportunity for multi-messenger astronomy. Prompt detection alerts for the astronomical community might make it possible to observe the onset of electromagnetic emission from (CBC). We demonstrate a computationally practical filtering strategy that could produce early-warning triggers before gravitational radiation from the final merger has arrived at the detectors.

PhysicsCoalescence (physics)Warning system010308 nuclear & particles physicsGravitational waveDetectorAstronomyBinary numberFOS: Physical sciencesAstronomy and AstrophysicsGeneral Relativity and Quantum Cosmology (gr-qc)Electromagnetic emission01 natural sciencesRapid detectionGeneral Relativity and Quantum CosmologySpace and Planetary Science0103 physical sciencesAstrophysics - Instrumentation and Methods for Astrophysics010303 astronomy & astrophysicsInstrumentation and Methods for Astrophysics (astro-ph.IM)Computer Science::Cryptography and Security
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Neutrino signatures on the high-transmission regions of the Lyman $\boldsymbol {\alpha }$ forest

2013

We quantify the impact of massive neutrinos on the statistics of low density regions in the intergalactic medium (IGM) as probed by the Lyman-� forest at redshifts z = 2.2– 4. Based on mock but realistic quasar (QSO) spectra extracted from hydrodynamic simulations with cold dark matter, baryons and neutrinos, we find that the probability distribution of weak Lyman-� absorption features, as sampled by Lyman-� flux regions at high transmissivity, is strongly affected by the presence of massive neutrinos. We show that systematic errors affecting the Lyman-� forest reduce but do not erase the neutrino signal. Using the Fisher matrix formalism, we conclude that the sum of the neutrino masses can…

PhysicsCold dark matter010308 nuclear & particles physicsMatter power spectrumCosmic microwave backgroundAstronomy and AstrophysicsQuasarAstrophysics::Cosmology and Extragalactic AstrophysicsAstrophysics7. Clean energy01 natural sciencesCosmologyRedshiftBaryonSpace and Planetary Science0103 physical sciencesNeutrino010303 astronomy & astrophysicsMonthly Notices of the Royal Astronomical Society
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EDGES result versus CMB and low-redshift constraints on ionization histories

2018

We examine the results from the Experiment to Detect the Global Epoch of Reionization Signature (EDGES), which has recently claimed the detection of a strong absorption in the 21 cm hyperfine transition line of neutral hydrogen, at redshifts demarcating the early stages of star formation. More concretely, we study the compatibility of the shape of the EDGES absorption profile, centered at a redshift of $z \sim 17.2$, with measurements of the reionization optical depth, the Gunn-Peterson optical depth, and Lyman-$\alpha$ emission from star-forming galaxies, for a variety of possible reionization models within the standard $\Lambda$CDM framework (that is, a Universe with a cosmological consta…

PhysicsCold dark matterCosmology and Nongalactic Astrophysics (astro-ph.CO)010308 nuclear & particles physicsStar formationCosmic microwave backgroundFOS: Physical sciencesAstrophysicsCosmological constantAstrophysics::Cosmology and Extragalactic AstrophysicsParameter space01 natural sciencesGalaxyRedshift0103 physical sciences010303 astronomy & astrophysicsReionizationAstrophysics - Cosmology and Nongalactic Astrophysics
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A fresh look into the interacting dark matter scenario

2018

The elastic scattering between dark matter particles and radiation represents an attractive possibility to solve a number of discrepancies between observations and standard cold dark matter predictions, as the induced collisional damping would imply a suppression of small-scale structures. We consider this scenario and confront it with measurements of the ionization history of the Universe at several redshifts and with recent estimates of the counts of Milky Way satellite galaxies. We derive a conservative upper bound on the dark matter-photon elastic scattering cross section of $\sigma_{\gamma \rm{DM}} < 8 \times 10^{-10} \, \sigma_T \, \left(m_{\rm DM}/{\rm GeV}\right)$ at $95\%$~CL, abou…

PhysicsConservation lawCosmology and Nongalactic Astrophysics (astro-ph.CO)Photondark matter theory010308 nuclear & particles physicsDark matterFOS: Physical sciencesAstronomy and AstrophysicsAstrophysicsAstrophysics::Cosmology and Extragalactic Astrophysics01 natural sciencesGalaxydwarfs galaxiesparticle physics-cosmology connection13. Climate actionIonization0103 physical sciencesreionizationSatellite010303 astronomy & astrophysicsReionizationAstrophysics - Cosmology and Nongalactic Astrophysics
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X-ray emission from early-type stars in the Orion Nebula Cluster

2005

The X-ray properties of twenty ~1 Myr old O, B, and A stars of the Orion Trapezium are examined with data from the Chandra Orion Ultradeep Project (COUP). On the basis of simple theories for X-ray emission, we define two classes separated at spectral type B4: hotter stars have strong winds that may give rise to X-ray emission in small- or large-scale wind shocks, and cooler stars that should be X-ray dark due to their weaker winds and absence of outer convection zones where dynamos can generate magnetic fields. Only two of the massive stars show exclusively the constant soft-spectrum emission expected from the standard model for X-ray emission from hot stars involving many small shocks in a…

PhysicsConvection010308 nuclear & particles physicsAstrophysics::High Energy Astrophysical PhenomenaAstrophysics (astro-ph)Magnetic confinement fusionFOS: Physical sciencesAstronomy and AstrophysicsAstrophysicsAstrophysics::Cosmology and Extragalactic AstrophysicsAstrophysics01 natural sciencesStandard ModelMagnetic fieldStarsSpace and Planetary Science0103 physical sciencesOrion NebulaCluster (physics)Astrophysics::Solar and Stellar AstrophysicsAstrophysics::Earth and Planetary Astrophysics010303 astronomy & astrophysicsAstrophysics::Galaxy AstrophysicsDynamo
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Low-frequency internal waves in magnetized rotating stellar radiation zones

2012

Context. With the progress of observational constraints on dynamical processes in stars, it becomes necessary to understand the angular momentum and the rotation profile history. In this context, internal waves constitute an efficient transport mechanism over long distances in stellar radiation zones. Indeed, they could be one of the mechanisms responsible for the quasi-flat rotation profile of the solar radiative region up to 0.2 R ⊙ .Aims. Angular momentum transport induced by internal waves depends on the properties of their excitation regions and of their dissipation during propagation. Then, the bottom of convective envelopes (the top of convective cores, respectively) are differential…

PhysicsConvectionAngular momentumAstronomy and AstrophysicsAstrophysicsInternal wave01 natural sciences010305 fluids & plasmasMagnetic fieldsymbols.namesakeClassical mechanicsSpace and Planetary ScienceQuantum electrodynamics0103 physical sciencesAngular momentum of lightsymbolsRadiative transferDifferential rotation010303 astronomy & astrophysicsLorentz forceAstronomy &amp; Astrophysics
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Maximum Entropy Limit of Small-scale Magnetic Field Fluctuations in the Quiet Sun

2017

The observed magnetic field on the solar surface is characterized by a very complex spatial and temporal behavior. Although feature-tracking algorithms have allowed us to deepen our understanding of this behavior, subjectivity plays an important role in the identification and tracking of such features. In this paper, we continue studies Gorobets, A. Y., Borrero, J. M., &amp; Berdyugina, S. 2016, ApJL, 825, L18 of the temporal stochasticity of the magnetic field on the solar surface without relying either on the concept of magnetic features or on subjective assumptions about their identification and interaction. We propose a data analysis method to quantify fluctuations of the line-of-sight …

PhysicsConvectionPhotosphere010504 meteorology & atmospheric sciencesScale (ratio)Principle of maximum entropyFOS: Physical sciencesAstronomy and Astrophysics01 natural sciencesMagnetic fieldAstrophysics - Solar and Stellar AstrophysicsSpace and Planetary ScienceQuantum electrodynamicsQUIET0103 physical sciencesAstrophysics::Solar and Stellar AstrophysicsLimit (mathematics)010303 astronomy & astrophysicsSolar and Stellar Astrophysics (astro-ph.SR)0105 earth and related environmental sciences
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Activity, Rotation And Convection in Orion: Are the Data Inconsistent with the MS Activity-Rossby Number Relation?

2004

A relation between activity and rotation in young ~ 1Myr PMS in often not observed, suggesting that the mechanism responsible for the X-ray emission may differ from the α - ω dynamo. We re-investigate the matter utilizing recent X-ray and rotational data on the Orion Nebula Cluster (ONC).

PhysicsConvectionRossby numberClassical mechanics010504 meteorology & atmospheric sciencesRelation (database)0103 physical sciencesAstrophysicsRotation010303 astronomy & astrophysics01 natural sciences0105 earth and related environmental sciences
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