2001A&A...379..288A


Query : 2001A&A...379..288A

2001A&A...379..288A - Astronomy and Astrophysics, volume 379, 288-304 (2001/11-3)

Envelope tomography of long-period variable stars. II. Method.

ALVAREZ R., JORISSEN A., PLEZ B., GILLET D., FOKIN A. and DEDECKER M.

Abstract (from CDS):

A tomographic method is described that makes it possible to follow the propagation of shock waves across the photosphere of long-period variable stars. The method relies on the correlation of the observed spectrum with numerical masks probing layers of different atmospheric depths. The formation depth of spectral lines is derived from synthetic spectra of non-variable red giant stars. When applied to Mira stars around maximum light, the tomographic masks reveal that the deepest photospheric layers are generally characterized by blueshifted absorption lines (attesting to their upward motion), whereas the uppermost layers generally exhibit redshifted absorption lines (indicating their infalling motion). Double absorption lines are found in intermediate layers, where the shock front is located. At later phases, the shock front is seen moving towards upper layers, until it leaves the photosphere.

Abstract Copyright:

Journal keyword(s): stars: AGB and post-AGB - stars: atmospheres - stars: late-type - stars: oscillations - stars: variables: general - shock waves

Simbad objects: 7

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Number of rows : 7
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2023
#notes
1 V* V Tau Mi* 04 52 02.3036114928 +17 32 16.710466272   13.29 8.50     M1-4.5e 53 0
2 V* BY Boo LP? 14 07 55.7560046 +43 51 16.025944 8.52 6.86 5.28 3.43 1.77 M4.5III 174 0
3 V* RU Her Mi* 16 10 14.5126789272 +25 04 14.306977524   13.82 12.24 7.56 4.15 M6-7e 211 0
4 V* Z Oph Mi* 17 19 32.1158063448 +01 30 54.201255300   11.29 7.60 9.71   K4-M5.5e 80 0
5 NAME Barnard's star BY* 17 57 48.4984700685 +04 41 36.113879676 12.497 11.24 9.511 8.298 6.741 M4V 778 2
6 V* RT Cyg Mi* 19 43 37.7664119520 +48 46 41.333575404   9.73 8.45 7.86 6.694 M2-7e 135 0
7 V* RY Cep Mi* 23 21 14.5407998376 +78 57 31.911968736   12.25 10.32     M0e 23 0

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2023.06.03-05:51:59

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