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    Instituto de Astrofísica de Canarias

    EST. 1975
    3,203论文总数
    11.8万引用总数

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    论文量&引用量时间轴

    机构学者

    排序
    Rafael Rebolo
    Rafael Rebolo
    Institute of Astrophysics of the Canary Islands
    论文:134引用:0H-index:0
    Enric Pallé
    Enric Pallé
    Research Division, Instituto de Astrofisica de Canarias
    论文:127引用:0H-index:0
    Nuno C. Santos
    Nuno C. Santos
    Departamento de Física e Astronomia, Faculdade de Ciências, Universidade do Porto;Instituto de Astrofísica e Ciências do Espaço
    论文:85引用:0H-index:0
    Jonay I. Gonzalez Hernandez
    Jonay I. Gonzalez Hernandez
    Instituto de Astrofisica de Canarias
    论文:79引用:0H-index:0
    Garik Israelian
    Garik Israelian
    Garik Israelian, Instituto de Astrofisica de Canarias
    论文:68引用:0H-index:0
    Carlos Allende Prieto
    Carlos Allende Prieto
    Instituto De Astrofisica De Canarias
    论文:62引用:0H-index:0
    Ignacio Trujillo
    Ignacio Trujillo
    Instituto de Astrof ´ õsica de Canarias
    论文:55引用:0H-index:0
    Antonio Aparicio
    Antonio Aparicio
    Inst Astrofis Canarias
    论文:51引用:0H-index:0
    J. Casares
    J. Casares
    Instituto de Astrofísica de Canarias (IAC)
    论文:50引用:0H-index:0

    论文(3207)

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    1The ALMA Survey to Resolve Exokuiper Belt Substructures (ARKS). X. Interpreting the Peculiar Dust Rings Around HD 131835
    M. R. Jankovic, N. Pawellek, J. Zander, T. Lohne, A. V. Krivov, J. Olofsson, A. Brennan, J. Milli, M. Bonduelle, M. C. Wyatt, A. A. Sefilian, T. D. Pearce,

    Context. Dusty discs detected around main-sequence stars are thought to be signs of planetesimal belts in which the dust distribution is shaped by collisional and dynamical processes, including interactions with gas if present. The debris disc around the young A-type star HD 131835 is composed of two dust rings at similar to 65 au and similar to 100 au, a third unconstrained innermost component, and a gaseous component centred at similar to 65 au. New ALMA observations show that the inner of the two dust rings is brighter than the outer one, in contrast with previous observations in scattered light. Aims. We explore two scenarios that could explain these observations: the two dust rings might represent distinct planetesimal belts with different collisional properties, or only the inner ring might contain planetesimals while the outer ring consists entirely of dust that has migrated outwards due to gas drag. Methods. To explore the first scenario, we employed a state-of-the-art collisional evolution code. To test the second scenario, we used a simple dynamical model of dust grain evolution in an optically thin gaseous disc. In each case we identified the parameters of the planetesimal and the gaseous disc that best reproduce the observational constraints. Results. Collisional models of two planetesimal belts cannot fully reproduce the observations by only varying their dynamical excitation, and matching the data through a different material strength requires an extreme difference in dust composition. The gas-driven scenario can reproduce the location of the outer ring and the brightness ratio of the two rings from scattered light observations, but the resulting outer ring is too faint overall in both scattered light and sub-millimetre emission. Conclusions. The dust rings in HD 131835 could be produced from two planetesimal belts, although how these belts would attain the required extremely different properties needs to be explained. The dust-gas interaction is a plausible alternative explanation and deserves further study using a more comprehensive model.

    2026ASTRONOMY & ASTROPHYSICS(2026)引用:100
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    2Spectral Properties of Anomalous Microwave Emission in 144 Galactic Clouds
    Roke Cepeda-Arroita,J. A. Rubino-Martin, R. T. Genova-Santos, C. Dickinson, S. E. Harper, F. Poidevin, M. W. Peel, R. Rebolo, D. Adak, A. Almeida, K. Aryan, R. B. Barreiro,

    Anomalous Microwave Emission (AME) is a diffuse microwave component thought to arise from spinning dust grains, though it remains poorly understood. We analyzed AME in 144 Galactic clouds by combining low-frequency maps from S-PASS (2.3 GHz), C-BASS (4.76 GHz), and QUIJOTE (10-20 GHz) with 21 ancillary maps. Using aperture photometry and parametric spectral energy distribution (SED) fitting via Markov chain Monte Carlo methods without informative priors, we measured AME emissivity, peak frequency, and spectral width. We achieved peak frequency constraints nearly three times tighter than previous work and identify 83 new AME sources. The AME spectra are generally broader than predicted by spinning dust models for a single phase of the interstellar medium, suggesting either multiple spinning dust components along the line of sight or incomplete representation of the grain size distribution in current models. However, the narrowest observed widths match theoretical predictions, supporting the spinning dust hypothesis. The AME amplitude correlates most strongly with the thermal dust peak flux and radiance, showing similar to 30% scatter and sublinear scaling, which suggests reduced AME efficiency in regions with brighter thermal dust emission. The AME peak frequency increases with thermal dust temperature in a trend current theoretical models do not reproduce, indicating that spinning dust models must incorporate dust evolution and radiative transfer in a self-consistent framework where environmental parameters and grain properties are interdependent. Polycyclic aromatic hydrocarbon tracers correlate with AME emissivity, supporting a physical link to small dust grains. Finally, a log-Gaussian function provides a good empirical description of the AME spectrum across the sample, given current data quality and frequency coverage.

    2026ASTRONOMY & ASTROPHYSICS(2026)引用:84
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    3A Search for Photometric Variability Towards the Globular Cluster M3 with the TWenty Inch Survey Telescope
    Morgan A. Mitchell,Paul Chote,James McCormac,Don Pollacco, Ioannis Apergis, J. D. Lyman, Isobel S. Lockley, Samuel Gill, James A. Blake, Alastair B. Claringbold, D. T. H. Steeghs, J. Casares

    We present the commissioning results and first scientific observations from the newly installed TWIST (TWenty Inch Survey Telescope) observatory - a 50 cm telescope equipped with an sCMOS (scientific complementary metal-oxide-semiconductor) camera providing a $36.1\times 24.1$ arcmin$<^>2$ field of view - housed in the former enclosure of the Super Wide Angle Search for Planets-North (SuperWASP-North) facility. We conducted a 67-night, 199-d baseline white-light monitoring campaign centred on the globular cluster M3 aimed at characterizing stellar variability within the cluster while also assessing the photometric performance of the newly commissioned system. We report the discovery of four new SX Phoenicis variables (V301-304), confirm their cluster membership, and identify fundamental-mode pulsation in one, allowing an independent period-luminosity-based distance estimate to M3. We revisited 231 previously known RR Lyrae stars, providing updated period measurements for 203 and white-light amplitudes for 198. We detected Blazhko-like modulation in 53 stars and characterized the modulation parameters for 28. Notably, we measure periods and amplitudes for the unclassified variables V286 and V287 for the first time. We also identify three foreground flaring M dwarfs, and assess the feasibility of detecting microlensing events in M3, concluding that expected rates are negligible. Alongside the scientific results, we introduce a new correction technique for flat-field images affected by scattered light and present a full characterization of the observatory's photometric capabilities. These results demonstrate the scientific utility of TWIST for high-cadence time-domain surveys using modest-aperture instrumentation.

    2026MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY(2026)引用:67
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    4Identifying Anomalous DESI Galaxy Spectra with a Variational Autoencoder
    C. Nicolaou, R. P. Nathan, O. Lahav, A. Palmese, A. Saintonge, J. Aguilar, S. Ahlen, C. Allende Prieto, S. Bailey, S. Benzvi, D. Bianchi, A. Brodzeller,

    The tens of millions of spectra being captured by the Dark Energy Spectroscopic Instrument (DESI) provide tremendous discovery potential. In this work we show how Machine Learning, in particular Variational Autoencoders (VAE), can detect anomalies in a sample of approximately 200,000 DESI spectra comprising galaxies, quasars and stars. We demonstrate that the VAE can compress the dimensionality of a spectrum by a factor of 100, while still retaining enough information to accurately reconstruct spectral features. We then detect anomalous spectra as those with high reconstruction error and those which are isolated in the VAE latent representation. The anomalies identified fall into two categories: spectra with artefacts and spectra with unique physical features. Awareness of the former can help to improve the DESI spectroscopic pipeline; whilst the latter can lead to the identification of new and unusual objects. To further curate the list of outliers, we use the Astronomaly package which employs Active Learning to provide personalised outlier recommendations for visual inspection. In this work we also explore the VAE latent space, finding that different object classes and subclasses are separated despite being unlabelled. We demonstrate the interpretability of this latent space by identifying tracks within it that correspond to various spectral characteristics. For example, we find tracks that correspond to increasing star formation and increase in broad emission lines along the Balmer series. In upcoming work we hope to apply the methods presented here to search for both systematics and astrophysically interesting objects in much larger datasets of DESI spectra.

    2026MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY(2026)引用:37
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    5A Young Progenitor for the Most Common Planetary Systems in the Galaxy
    John H Livingston, Erik A Petigura,Trevor J David,Kento Masuda,James Owen,David Nesvorný,Konstantin Batygin, Jerome de Leon,Mayuko Mori, Kai Ikuta,Akihiko Fukui,Noriharu Watanabe,

    The Galaxy's most common known planetary systems have several Earth-to-Neptune-size planets in compact orbits1. At small orbital separations, larger planets are less common than their smaller counterparts by an order of magnitude. The young star V1298 Tau hosts one such compact planetary system, albeit with four planets that are uncommonly large (5 to 10 Earth radii)2,3. The planets form a chain of near-resonances that result in transit-timing variations of several hours. Here we present a multi-year campaign to characterize this system with transit-timing variations, a method insensitive to the intense magnetic activity of the star. Through targeted observations, we first resolved the previously unknown orbital period of the outermost planet. The full 9-year baseline from these and archival data then enabled robust determination of the masses and orbital parameters for all four planets. We find the planets have low, sub-Neptune masses and nearly circular orbits, implying a dynamically tranquil history. Their low masses and large radii indicate that the inner planets underwent a period of rapid cooling immediately after dispersal of the protoplanetary disk. Still, they are much less dense than mature planets of comparable size. We predict the planets will contract to 1.5-4.0 Earth radii and join the population of super-Earths and sub-Neptunes that nature produces in abundance.

    2026Nature(2026)引用:7
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