<?xml-stylesheet href='/static/xsl/oai.xsl' type='text/xsl'?>
<ri:Resource created="1997-12-09T16:40:34Z" status="active" updated="2025-05-19T09:50:00Z" version="1.2" xmlns:ri="http://www.ivoa.net/xml/RegistryInterface/v1.0" xmlns:vr="http://www.ivoa.net/xml/VOResource/v1.0" xmlns:vs="http://www.ivoa.net/xml/VODataService/v1.1" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://www.ivoa.net/xml/VOResource/v1.0 http://vo.ari.uni-heidelberg.de/docs/schemata/VOResource.xsd http://www.ivoa.net/xml/VODataService/v1.1 http://vo.ari.uni-heidelberg.de/docs/schemata/VODataService.xsd" xsi:type="vs:CatalogService"><title>Energy distribution in stars at 320-760 nm</title><shortName>III/186</shortName><identifier>ivo://CDS.VizieR/III/186</identifier><curation><publisher ivo-id="ivo://CDS">CDS</publisher><creator><name>Knyazeva L.N.</name></creator><creator><name>Kharitonov A.V.</name></creator><date role="Updated">1997-12-09T15:40:42Z</date><date role="Created">1997-12-09T16:40:34Z</date><contact><name>CDS support team</name><address>CDS, Observatoire de Strasbourg, 11 rue de l'Universite, F-67000 Strasbourg, France</address><email>cds-question@unistra.fr</email></contact></curation><content><subject>spectrophotometry</subject><description>The intrinsic energy distribution for 41 spectral subclasses in the range of wavelengths of 320-760 nm are derived in the following way: (1) The sources of the spectrophotometric data were taken from three catalogues published in FSU (Kharitonov et al. 1988, Glushneva, ed., 1982, Alekseeva et al. 1992), containing energy distributions of about 2000 stars of different spectral types. (2) MK spectral classes were taken from the Bright Star Catalogue (Hoffleit 1982; hereafter BSC). The paper by Gray and Garrison (1987) was took into account to examine the influence of errors in spectral classification. (3) The quality of stars selected for each subclass was estimated by comparison of the observed and synthetic (U-B) and (B-V) color indices calculated for our energy distributions. The results have been published by Knyazeva and Kharitonov (1993, 1994a, 1994b, 1996a, 1996b)</description><source format="bibcode">1996AZh....73..571K</source><referenceURL>https://cdsarc.cds.unistra.fr/viz-bin/cat/III/186</referenceURL><type>Catalog</type><contentLevel>Research</contentLevel><relationship><relationshipType>IsServedBy</relationshipType><relatedResource ivo-id="ivo://CDS.VizieR/TAP">TAP VizieR generic service</relatedResource></relationship></content><rights>https://cds.unistra.fr/vizier-org/licences_vizier.html</rights><capability><interface xsi:type="vr:WebBrowser"><accessURL use="full">https://vizier.cds.unistra.fr/viz-bin/VizieR-2?-source=III/186</accessURL><mirrorURL title="VizieR at IUCAA: Pune, India">https://vizier.iucaa.in/viz-bin/VizieR-2?-source=III/186</mirrorURL><mirrorURL title="VizieR at SAAO: SAAO, South Africa">http://vizieridia.saao.ac.za/viz-bin/VizieR-2?-source=III/186</mirrorURL></interface></capability><capability><interface xsi:type="vs:ParamHTTP"><accessURL use="base">https://vizier.cds.unistra.fr/viz-bin/votable?-source=III/186</accessURL><mirrorURL title="VizieR at IUCAA: Pune, India">https://vizier.iucaa.in/viz-bin/votable?-source=III/186</mirrorURL><mirrorURL title="VizieR at SAAO: SAAO, South Africa">http://vizieridia.saao.ac.za/viz-bin/votable?-source=III/186</mirrorURL><queryType>GET</queryType><resultType>text/xml+votable</resultType></interface></capability><capability standardID="ivo://ivoa.net/std/TAP#aux"><interface xsi:type="vs:ParamHTTP" role="std"><accessURL use="base">https://tapvizier.cds.unistra.fr/TAPVizieR/tap</accessURL></interface></capability><coverage><footprint ivo-id="ivo://ivoa.net/std/moc"/><waveband>Optical</waveband></coverage><tableset><schema><name>default</name><table><name>III/186/table</name><description>Intrinsic energy distribution for spectral subclasses (relative to maximum)</description><column><name>recno</name><description>Record number assigned by the VizieR team. Should Not be used for identification.</description><ucd>meta.record</ucd><dataType xsi:type="vs:VOTableType">int</dataType></column><column><name>Lambda</name><description>[3225/7575] Spectral line wavelength</description><unit>nm</unit><ucd>em.wl</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(B5V)</name><description>Intrinsic energy for B5V</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(B7V)</name><description>Intrinsic energy for B7V</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(B8V)</name><description>Intrinsic energy for B8V</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(B9V)</name><description>Intrinsic energy for B9V</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(B9.5V)</name><description>Intrinsic energy for B9.5V</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(A0V)</name><description>Intrinsic energy for A0V</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(A1V)</name><description>Intrinsic energy for A1V</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(A2V)</name><description>Intrinsic energy for A2V</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(A3V)</name><description>Intrinsic energy for A3V</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(A4V)</name><description>Intrinsic energy for A4V</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(A5V)</name><description>Intrinsic energy for A5V</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(A7V)</name><description>Intrinsic energy for A7V</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(A3IV)</name><description>Intrinsic energy for A3IV</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(A7IV)</name><description>Intrinsic energy for A7IV</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(F0V)</name><description>Intrinsic energy for F0V</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(F5V)</name><description>Intrinsic energy for F5V</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(F6V)</name><description>Intrinsic energy for F6V</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(F7V)</name><description>Intrinsic energy for F7V</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(F8V)</name><description>Intrinsic energy for F8V</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(F0IV)</name><description>Intrinsic energy for F0IV</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(F2IV)</name><description>Intrinsic energy for F2IV</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(F5IV)</name><description>Intrinsic energy for F5IV</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(G0V)</name><description>Intrinsic energy for G0V</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(G2V)</name><description>Intrinsic energy for G2V</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(G5V)</name><description>Intrinsic energy for G5V</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(G8V)</name><description>Intrinsic energy for G8V</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(G7III)</name><description>Intrinsic energy for G7III</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(G8III)</name><description>Intrinsic energy for G8III</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(G9III)</name><description>Intrinsic energy for G9III</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(K0III)</name><description>Intrinsic energy for K0III</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(K1III)</name><description>Intrinsic energy for K1III</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(K2III)</name><description>Intrinsic energy for K2III</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(K3III)</name><description>Intrinsic energy for K3III</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(K4III)</name><description>Intrinsic energy for K4III</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(K5III)</name><description>Intrinsic energy for K5III</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(M0III)</name><description>Intrinsic energy for M0III</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(M1III)</name><description>Intrinsic energy for M1III</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(M2III)</name><description>Intrinsic energy for M2III</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(M3III)</name><description>Intrinsic energy for M3III</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(M4III)</name><description>Intrinsic energy for M4III</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column><column><name>E(M5III)</name><description>Intrinsic energy for M5III</description><ucd>phot.flux.density;em.opt</ucd><dataType xsi:type="vs:VOTableType">float</dataType></column></table></schema></tableset></ri:Resource>