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A distance to the Large Magellanic Cloud that is precise to one per cent.

Authors :
Pietrzyński G
Graczyk D
Gallenne A
Gieren W
Thompson IB
Pilecki B
Karczmarek P
Górski M
Suchomska K
Taormina M
Zgirski B
Wielgórski P
Kołaczkowski Z
Konorski P
Villanova S
Nardetto N
Kervella P
Bresolin F
Kudritzki RP
Storm J
Smolec R
Narloch W
Source :
Nature [Nature] 2019 Mar; Vol. 567 (7747), pp. 200-203. Date of Electronic Publication: 2019 Mar 13.
Publication Year :
2019

Abstract

In the era of precision cosmology, it is essential to determine the Hubble constant empirically with an accuracy of one per cent or better <superscript>1</superscript> . At present, the uncertainty on this constant is dominated by the uncertainty in the calibration of the Cepheid period-luminosity relationship <superscript>2,3</superscript> (also known as the Leavitt law). The Large Magellanic Cloud has traditionally served as the best galaxy with which to calibrate Cepheid period-luminosity relations, and as a result has become the best anchor point for the cosmic distance scale <superscript>4,5</superscript> . Eclipsing binary systems composed of late-type stars offer the most precise and accurate way to measure the distance to the Large Magellanic Cloud. Currently the limit of the precision attainable with this technique is about two per cent, and is set by the precision of the existing calibrations of the surface brightness-colour relation <superscript>5,6</superscript> . Here we report a calibration of the surface brightness-colour relation with a precision of 0.8 per cent. We use this calibration to determine a geometrical distance to the Large Magellanic Cloud that is precise to 1 per cent based on 20 eclipsing binary systems. The final distance is 49.59 ± 0.09 (statistical) ± 0.54 (systematic) kiloparsecs.

Details

Language :
English
ISSN :
1476-4687
Volume :
567
Issue :
7747
Database :
MEDLINE
Journal :
Nature
Publication Type :
Academic Journal
Accession number :
30867610
Full Text :
https://doi.org/10.1038/s41586-019-0999-4