Emission line studies of wolf-rayet binaries (Record no. 9276)

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040 ## - CATALOGING SOURCE
Transcribing agency IIA Library
080 ## - UNIVERSAL DECIMAL CLASSIFICATION NUMBER
Universal Decimal Classification number 043:52
Item number (SHY)
100 ## - MAIN ENTRY--PERSONAL NAME
Personal name Shylaja, B. S.
9 (RLIN) 15593
Relator term Author
245 #0 - TITLE STATEMENT
Title Emission line studies of wolf-rayet binaries
Statement of responsibility, etc. B. S. Shylaja
Medium [Ph.D Thesis]
260 ## - PUBLICATION, DISTRIBUTION, ETC.
Place of publication, distribution, etc. Bangalore
Name of publisher, distributor, etc. Indian Institute of Astrophysics
Date of publication, distribution, etc. 1986
300 ## - PHYSICAL DESCRIPTION
Extent vi, 175p.
502 ## - DISSERTATION NOTE
Degree type Doctor of Philosophy
Name of granting institution Indian Institute of Astrophysics, Bangalore
Year degree granted 1986
520 ## - SUMMARY, ETC.
Summary, etc. The construction of a kinematical and physical picture of a<br/>Wolf - Rayet atmosphere was attempted by late Prof. M.K.V. Bappu<br/>and the present work is a continuation of the understanding of<br/>these atmospheres. The binary systems have been chosen with the<br/>idea of seeing the variation of the atmospheric structure as it<br/>manifests in the presence of the companion. The simple method of<br/>observation of the flux variations was suggested by Prof. Bappu<br/>for this study.<br/>Generally the atmospheres of Wolf - Rayet (WR) stars are<br/>known to be extended. This was derived from the velocities of<br/>the emission and associated absorption lines. Further studies<br/>have shown that there is some type of stratification possibly<br/>prevalent in these atmospheres.<br/>To study this, the binary systems with WR components are<br/>chosen. When the companion passes in front of the primary WR<br/>component, atmospheric eclipses are expected to become<br/>noticeable. This can be observed as the variation in the total<br/>flux of the emission I ines under study. Spectrophotometric<br/>techniques provide accurate flux estimates and continuum energy<br/>distributions as well. The effect of the earth's atmosphere on<br/>the measured value of flux and the role played by the minor<br/>constituents of the atmosphere will have to be taken into<br/>account for this estimation.<br/>For this study, one of the objects chosen was the shortest<br/>period binary with WN7 component, CQ Cep. The line profiles have<br/>established the complexity of the atmosphere. The eclipse effect is displayed by only one line - N V line at A 4693. The radial<br/>veloci ty curves (RV) for different emission 1 ines indicate<br/>different orbital solutions. The continuum distribution also<br/>does not reveal the identity of the companion. Based on the flux<br/>variations, it is possible to arrive at the asymmetric<br/>distribution of the line emitting material as a possible cause<br/>for non-eclipse effects.<br/>The second obj ect chosen for study is HD 513896, which was<br/>considered as single earlier. Recent accurate RV and light<br/>variation studies have given it the status of a binary. The<br/>emission flux variations, which are reported in this work,<br/>reflect the asymmetric distribution of the line emitting<br/>material. The nature of the companion becomes indirectly<br/>evident, in the distortion of the atmosphere. Fast photometric<br/>measurements show variations, which may imply mass transfer and<br/>accretion.<br/>The open cluster NGC 6231 has two WR members associated with<br/>it, one of them being HD 152270 (WC7 + 0). This is an<br/>established binary with a period of 8.9 d. The measured flux<br/>show possible eclipse effects only for the high excitation lines<br/>like C III and C IV. On the other hand, the He I and He II show<br/>a scatter implying their non participation in the orbit. The<br/>photometric measurements in regions, which avoid the effect of<br/>emission lines, show that there is no eclipse of the continuum,<br/>as expected from the angle of inclination of the orbit, 39.<br/>The other member of the cluster, BD 151932 (WN7), considered<br/>single, shows irregular variation of flux all through. However, I<br/>the photometric variations display a periodicity of about 6 d.<br/>Confirmation of this requires better resolution spectra to<br/>detect small changes of radial. velocity, if any. The existence<br/>of a compact companion puts it to the second WR phase in the<br/>evolution of a close massive binary and, at the same time, its<br/>membership to the cluster becomes doubtful.<br/>From the study of the binaries and suspected binaries, the<br/>effect of the companion on the extended atmosphere can be partly<br/>understood. The shortest period system, CQ Cep, has the flux<br/>variations caused by the asymmetric atmospheric structure, which<br/>may be explained by wind dominant Roche surfaces. Similar<br/>variations in BD 59896, with a slightly larger period, show that<br/>the companion is effective in distorting the line emitting<br/>regions. The flux variations of the spectroscopic binary HD<br/>152279 shows that, although the continuum eclipses are not seen,<br/>there is a possibility of atmospheric eclipses. Similar study<br/>of HD 151932 reveals the important aspect of a possible periodic<br/>variation only in the continuum and not of the line flux. This<br/>aspect can be established only by more detailed photometric' and<br/>spectroscopic investigation.<br/>Thus, It appears that there is a general, stratification<br/>common to all the above mentioned WR systems - the higher<br/>excitation lines arising closer to the photosphere. This leads<br/>to the distortion of all the emission lines, like N IV, C IV etc<br/>for CQ cep In HD 59896 such high excitation lines show moderate variations, while He II lines are more distorted. In case of the still longer period binary HD 152279, the eclipse effects are seen for the higher excitation lines like C III and C IV, and<br/>not for the He II and He I lines. When these results are<br/>compared with the available information on other binaries, many<br/>interesting results emerge. The atmospheric eclipse is evident<br/>in many spectroscopic binaries indirectly. Also the behaviour of<br/>the A 4686 line is different from other He II 1 ines in WN<br/>binaries. Similarly the WCs are likely to have the A 5696 line of<br/>C III as a special case. The results of HD 50896 and HD 151932<br/>show different types of emission and light variations. The<br/>possibility of a compact companion in the latter case becomes<br/>smaller, especially when the results on another system with<br/>suspected, compact companion, HD 76536, are compared. Finally,<br/>the evolution of the WR phase in binaries and the possible<br/>effect on. the atmospheric structure are discussed, from which<br/>it appears that although the subgroups of.WRs are heterogeneous,<br/>the stratifications in their atmospheres, in general, are<br/>similar.
650 ## - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name entry element Astronomy and Astrophysics Thesaurus
650 ## - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name entry element Ph.D.Thesis
9 (RLIN) 1344
650 ## - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name entry element Wolf-Rayet Stars
9 (RLIN) 7146
700 ## - ADDED ENTRY--PERSONAL NAME
Personal name J. C. Bhattacharyya
Relator term Supervisor
9 (RLIN) 48845
856 ## - ELECTRONIC LOCATION AND ACCESS
Uniform Resource Identifier <a href="http://prints.iiap.res.in/handle/2248/96">http://prints.iiap.res.in/handle/2248/96</a>
Link text Click Here to Access eThesis
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Koha item type Thesis & Dissertations
Source of classification or shelving scheme Universal Decimal Classification
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    Universal Decimal Classification     IIA Library-Bangalore IIA Library-Bangalore General Stacks   043:52/(SHY) 10183 05/11/2021   Thesis & Dissertations

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