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<ri:Resource created="2011-07-28T09:17:59Z" 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>La2010: orbital solution for long term Earth motion</title><shortName>J/A+A/532/A89</shortName><identifier>ivo://CDS.VizieR/J/A+A/532/A89</identifier><altIdentifier>doi:10.26093/cds/vizier.35320089</altIdentifier><curation><publisher ivo-id="ivo://CDS">CDS</publisher><creator><name>Laskar J.</name></creator><creator><name>Fienga A.</name></creator><creator><name>Gastineau M.</name></creator><creator><name>Manche H.</name></creator><date role="Updated">2018-03-13T07:04:49Z</date><date role="Created">2011-07-28T09:17:59Z</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>earth-planet</subject><subject>solar-system</subject><description>We present here a new solution for the astronomical computation of the orbital motion of the Earth spanning from 0 to -250Myr. The main improvement with respect to our previous numerical solution La2004 is an improved adjustment of the parameters and initial conditions through a fit over 1Myr to a special version of the highly accurate numerical ephemeris INPOP08 (Integration Numerique Planetaire de l'Observatoire de Paris). The precession equations have also been entirely revised and are no longer averaged over the orbital motion of the Earth and Moon. This new orbital solution is now valid over more than 50Myr in the past or into the future with proper phases of the eccentricity variations. Owing to the chaotic behavior, the precision of the solution decreases rapidly beyond this time span, and we discuss the behavior of various solutions beyond 50Myr. For paleoclimate calibrations, we provide several different solutions that are all compatible with the most precise planetary ephemeris. We have thus reached the time where geological data are now required to discriminate between planetary orbital solutions beyond 50Myr.</description><source format="bibcode">2011A&amp;A...532A..89L</source><referenceURL>https://cdsarc.cds.unistra.fr/viz-bin/cat/J/A+A/532/A89</referenceURL><type>Catalog</type><contentLevel>Research</contentLevel><relationship><relationshipType>IsServedBy</relationshipType><relatedResource ivo-id="ivo://CDS.VizieR/TAP">TAP VizieR generic service</relatedResource></relationship><relationship><relationshipType>related-to</relationshipType><relatedResource ivo-id="ivo://CDS.VizieR/VI/63">VI/63 : Earth Orbit, Precession and Insolation -20Myr to +10Myr (Laskar+ 1993)</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=J/A+A/532/A89</accessURL><mirrorURL title="VizieR at IUCAA: Pune, India">https://vizier.iucaa.in/viz-bin/VizieR-2?-source=J/A+A/532/A89</mirrorURL><mirrorURL title="VizieR at SAAO: SAAO, South Africa">http://vizieridia.saao.ac.za/viz-bin/VizieR-2?-source=J/A+A/532/A89</mirrorURL></interface></capability><capability><interface xsi:type="vs:ParamHTTP"><accessURL use="base">https://vizier.cds.unistra.fr/viz-bin/votable?-source=J/A+A/532/A89</accessURL><mirrorURL title="VizieR at IUCAA: Pune, India">https://vizier.iucaa.in/viz-bin/votable?-source=J/A+A/532/A89</mirrorURL><mirrorURL title="VizieR at SAAO: SAAO, South Africa">http://vizieridia.saao.ac.za/viz-bin/votable?-source=J/A+A/532/A89</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"/></coverage><tableset><schema><name>default</name><table><name>J/A+A/532/A89/orbit</name><description>Combined table from original tables</description><column><name>S</name><ucd>meta.id;stat.fit</ucd><dataType xsi:type="vs:VOTableType" arraysize="1*">char</dataType></column><column><name>t</name><description>[-249999/0] Time from J2000.0</description><unit>Myr</unit><ucd>time.epoch</ucd><dataType xsi:type="vs:VOTableType">double</dataType><flag>indexed</flag></column><column><name>a</name><description>Semi-major axis (1)</description><unit>AU</unit><ucd>phys.angSize.smajAxis;src.orbital</ucd><dataType xsi:type="vs:VOTableType">double</dataType></column><column><name>l</name><description>Mean longitude (expressed in radians) (1)</description><unit>rad</unit><ucd>src.orbital.periastron</ucd><dataType xsi:type="vs:VOTableType">double</dataType></column><column><name>k</name><description>e*cos({varpi}) (1)</description><ucd>src.orbital</ucd><dataType xsi:type="vs:VOTableType">double</dataType></column><column><name>h</name><description>e*sin({varpi}) (1)</description><ucd>src.orbital</ucd><dataType xsi:type="vs:VOTableType">double</dataType></column><column><name>q</name><description>sin(i/2)cos({Omega}) (1)</description><ucd>src.orbital</ucd><dataType xsi:type="vs:VOTableType">double</dataType></column><column><name>p</name><description>sin(i/2)sin({Omega}) (1)</description><ucd>src.orbital</ucd><dataType xsi:type="vs:VOTableType">double</dataType></column><column><name>i</name><description>Inclination angle i = sin^-1^(sqrt(p^2^+q^2^)) (1)</description><unit>deg</unit><ucd>src.orbital.inclination</ucd><dataType xsi:type="vs:VOTableType">double</dataType></column><column><name>e</name><description>Eccentricity [sqrt(k^2^+h^2^)]</description><ucd>src.orbital.eccentricity</ucd><dataType xsi:type="vs:VOTableType">double</dataType></column></table></schema></tableset></ri:Resource>