paper

NLTE spectroscopic analysis of the He anomaly in subluminous B-type stars

arXiv:1804.03234 · doi:10.1051/0004-6361/201833182

Abstract

Several B-type main-sequence stars show chemical peculiarities. A particularly striking class are the He stars, which exhibit a remarkable enrichment of He with respect to He. This isotopic anomaly has also been found in blue horizontal branch (BHB) and subdwarf B (sdB) stars, which are helium-core burning stars of the extreme horizontal branch. Using a hybrid local/non-local thermodynamic equilibrium (LTE/NLTE) approach for B-type stars, we analyzed high-quality spectra of two known He BHBs and nine known He sdBs to determine their isotopic helium abundances and He/He abundance ratios. We redetermined their atmospheric parameters and analyzed selected neutral helium lines, including 4922 and 6678 , which are very sensitive to He/He. Most of the He sdBs cluster in a narrow temperature strip between 26000 K and 30000 K and are helium deficient in accordance with previous LTE analyses. BD+48 2721 is reclassified as a BHB star because of its low temperature ( 20700 K). Whereas He is almost absent (He/He 0.25) in most of the known He stars, other sample stars show abundance ratios up to He/He2.51. A search for He stars in the ESO SPY survey led to the discovery of two new He sdB stars (HE 0929-0424 and HE 1047-0436). The observed helium line profiles of all BHBs and of three sdBs are not matched by chemically homogeneous atmospheres, but hint at vertical helium stratification. This phenomenon has been seen in other peculiar B-type stars, but is found for the first time for sdBs. We estimate helium to increase from the outer to the inner atmosphere by factors ranging from 1.4 (SB 290) up to 8.0 (BD+48 2721).

19 pages, 79 figures submitted to Astronomy&Astrophysics