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1.
Nature ; 533(7603): 366-8, 2016 05 19.
Artigo em Inglês | MEDLINE | ID: mdl-27193683

RESUMO

Interacting compact binary systems provide a natural laboratory in which to study irradiated substellar objects. As the mass-losing secondary (donor) in these systems makes a transition from the stellar to the substellar regime, it is also irradiated by the primary (compact accretor). The internal and external energy fluxes are both expected to be comparable in these objects, providing access to an unexplored irradiation regime. The atmospheric properties of donors are largely unknown, but could be modified by the irradiation. To constrain models of donor atmospheres, it is necessary to obtain accurate observational estimates of their physical properties (masses, radii, temperatures and albedos). Here we report the spectroscopic detection and characterization of an irradiated substellar donor in an accreting white-dwarf binary system. Our near-infrared observations allow us to determine a model-independent mass estimate for the donor of 0.055 ± 0.008 solar masses and an average spectral type of L1 ± 1, supporting both theoretical predictions and model-dependent observational constraints that suggest that the donor is a brown dwarf. Our time-resolved data also allow us to estimate the average irradiation-induced temperature difference between the dayside and nightside of the substellar donor (57 kelvin) and the maximum difference between the hottest and coolest parts of its surface (200 kelvin). The observations are well described by a simple geometric reprocessing model with a bolometric (Bond) albedo of less than 0.54 at the 2σ confidence level, consistent with high reprocessing efficiency, but poor lateral heat redistribution in the atmosphere of the brown-dwarf donor. These results add to our knowledge of binary evolution, in that the donor has survived the transition from the stellar to the substellar regime, and of substellar atmospheres, in that we have been able to test a regime in which the irradiation and the internal energy of a brown dwarf are comparable.

2.
Nature ; 481(7382): 448-9, 2012 Jan 11.
Artigo em Inglês | MEDLINE | ID: mdl-22281587

Assuntos
Planetas
3.
ANS Adv Nurs Sci ; 33(4): 362-75, 2010.
Artigo em Inglês | MEDLINE | ID: mdl-21068557

RESUMO

Community has historically provided an essential psycho-spiritual framework for nursing. Changes in communication technology pose challenges for nurses internationally who create communities across borders. This article discusses The Bamboo Bridge online community, a project responding to the global call for nursing education about the complementarity of nursing and healing traditions. The project explores how technologies such as Centra and Ning promote community building and encourage belonging in members from 5 continents and 10 countries. This article includes detailed accounts of the project design, examples of cultural diplomacy as the emerging theoretical framework, and an African member's perspective of online community.


Assuntos
Cooperação Internacional , Internet , Medicina Tradicional , Apoio Social , Enfermagem Transcultural/educação , Educação a Distância , Humanos , Relações Interprofissionais , Estados Unidos , Webcasts como Assunto
4.
Science ; 314(5805): 1578-80, 2006 Dec 08.
Artigo em Inglês | MEDLINE | ID: mdl-17158322

RESUMO

A long-standing and unverified prediction of binary star evolution theory is the existence of a population of white dwarfs accreting from substellar donor stars. Such systems ought to be common, but the difficulty of finding them, combined with the challenge of detecting the donor against the light from accretion, means that no donor star to date has a measured mass below the hydrogen burning limit. We applied a technique that allowed us to reliably measure the mass of the unseen donor star in eclipsing systems. We were able to identify a brown dwarf donor star, with a mass of 0.052 +/- 0.002 solar mass. The relatively high mass of the donor star for its orbital period suggests that current evolutionary models may underestimate the radii of brown dwarfs.

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