<?xml version='1.0'?><?xml-stylesheet href='/static/xsl/oai.xsl' type='text/xsl'?><ri:Resource created="2017-04-05T08:00:00Z" status="active" updated="2024-12-27T08:31:04Z" version="1.2" xmlns:g-colstat="http://dc.g-vo.org/ColStats-1" xmlns:ri="http://www.ivoa.net/xml/RegistryInterface/v1.0" xmlns:ssap="http://www.ivoa.net/xml/SSA/v1.1" xmlns:vg="http://www.ivoa.net/xml/VORegistry/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://dc.g-vo.org/ColStats-1 http://vo.ari.uni-heidelberg.de/docs/schemata/Colstats.xsd http://www.ivoa.net/xml/RegistryInterface/v1.0 http://vo.ari.uni-heidelberg.de/docs/schemata/RegistryInterface.xsd http://www.ivoa.net/xml/SSA/v1.1 http://vo.ari.uni-heidelberg.de/docs/schemata/SSA.xsd http://www.ivoa.net/xml/VORegistry/v1.0 http://vo.ari.uni-heidelberg.de/docs/schemata/VORegistry.xsd 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>Coordinated microlensing survey observations with Kepler K2/C9 using
VST</title><shortName>k2c9vst ssap</shortName><identifier>ivo://org.gavo.dc/k2c9vst/q/ssa</identifier><curation><publisher>The GAVO DC team</publisher><creator><name>Hundertmark, M.</name></creator><creator><name>Korhonen, H.</name></creator><creator><name>Jørgensen, U.</name></creator><creator><name>Street, R</name></creator><creator><name>Penny, M.</name></creator><creator><name>Tsapras, Y.</name></creator><creator><name>Dominik, M.</name></creator><creator><name>Kerins, E.</name></creator><creator><name>Cassan, A.</name></creator><creator><name>Snodgrass, C.</name></creator><creator><name>Bachelet, E.</name></creator><creator><name>Bramich, D.</name></creator><creator><name>Bozza, V.</name></creator><date role="Updated">2026-01-16T10:35:23Z</date><contact><name>GAVO Data Centre Team</name><address>Mönchhofstrasse 12-14, D-69120 Heidelberg</address><email>gavo@ari.uni-heidelberg.de</email><telephone>+49 6221 54 1837</telephone></contact></curation><content><subject>light-curves</subject><subject>exoplanets</subject><subject>gravitational-microlensing</subject><subject>time-domain-astronomy</subject><description> The Kepler satellite has observed the Galactic center in a campaign
lasting from April until the end of June 2016 (K2/C9). The main
objective of the 99 hours for the microlensing program 097.C-0261(A)
using the ESO VLT Survey Telescope (VST) was to monitor the superstamp
(i.e., the actually downloaded region of K2/C9) in service mode for
improving the event coverage and securing some color-information. Due
to weather conditions, the majority of images were taken in the red
band. These are part of the present release.

The exact pointing strategy was adjusted to cover the superstamp with
6 pointings and to contain as many microlensing events from earlier
seasons as possible. In addition, a two-point dither was requested to
reduce the impact of bad pixels and detector gaps. Consequently, some
events were getting more coverage and have been observed with
different CCDs. The large footprint of roughly 1 square degree and the
complementary weather conditions at Cerro Paranal have lead to the
coverage of 147 events (this resource's events table), but ~60 of
those were already at baseline.</description><source>http://archive.eso.org/wdb/wdb/eso/sched_rep_arc/query?progid=097.C-0261(A)</source><referenceURL>https://dc.g-vo.org/k2c9vst/q/ssa/info</referenceURL><type>Archive</type><contentLevel>Research</contentLevel><relationship><relationshipType>IsServedBy</relationshipType><relatedResource ivo-id="ivo://org.gavo.dc/__system__/obscore/obscore">GAVO Data Center Obscore</relatedResource><relatedResource ivo-id="ivo://org.gavo.dc/tap">GAVO Data Center TAP service</relatedResource></relationship></content><capability standardID="ivo://ivoa.net/std/ssa" xsi:type="ssap:SimpleSpectralAccess"><interface role="std" xsi:type="vs:ParamHTTP"><accessURL use="base">http://dc.g-vo.org/k2c9vst/q/ssa/ssap.xml?</accessURL><mirrorURL>https://dc.g-vo.org/k2c9vst/q/ssa/ssap.xml?</mirrorURL><queryType>GET</queryType><resultType>application/x-votable+xml</resultType><param std="true"><name>POS</name><description>ICRS position of target object</description><unit>deg</unit><dataType arraysize="*" xsi:type="vs:SimpleDataType">char</dataType></param><param std="true"><name>SIZE</name><description>Size of the region of interest around POS</description><unit>deg</unit><dataType xsi:type="vs:SimpleDataType">real</dataType></param><param std="true"><name>BAND</name><description>Wavelength (range) of interest (or symbolic bandpass names)</description><unit>m</unit><dataType arraysize="*" xsi:type="vs:SimpleDataType">char</dataType></param><param std="true"><name>FORMAT</name><description>MIME type of the file served</description><ucd>meta.code.mime</ucd><dataType arraysize="*" xsi:type="vs:SimpleDataType">char</dataType></param><param std="true"><name>APERTURE</name><description>Angular diameter of aperture</description><unit>deg</unit><ucd>phys.angSize;instr.fov</ucd><dataType arraysize="*" xsi:type="vs:SimpleDataType">char</dataType></param><param std="true"><name>SNR</name><description>Signal-to-noise ratio estimated for this dataset</description><ucd>stat.snr</ucd><dataType arraysize="*" xsi:type="vs:SimpleDataType">char</dataType></param><param std="true"><name>REDSHIFT</name><description>Redshift of target object</description><ucd>src.redshift</ucd><dataType arraysize="*" xsi:type="vs:SimpleDataType">char</dataType></param><param std="true"><name>TARGETNAME</name><description>Common name of object observed.</description><ucd>meta.id;src</ucd><dataType arraysize="*" xsi:type="vs:SimpleDataType">char</dataType></param><param std="true"><name>TARGETCLASS</name><description>Object class (star, QSO,...; 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VST</title><description> The Kepler satellite has observed the Galactic center in a campaign
lasting from April until the end of June 2016 (K2/C9). The main
objective of the 99 hours for the microlensing program 097.C-0261(A)
using the ESO VLT Survey Telescope (VST) was to monitor the superstamp
(i.e., the actually downloaded region of K2/C9) in service mode for
improving the event coverage and securing some color-information. Due
to weather conditions, the majority of images were taken in the red
band. These are part of the present release.

The exact pointing strategy was adjusted to cover the superstamp with
6 pointings and to contain as many microlensing events from earlier
seasons as possible. In addition, a two-point dither was requested to
reduce the impact of bad pixels and detector gaps. Consequently, some
events were getting more coverage and have been observed with
different CCDs. The large footprint of roughly 1 square degree and the
complementary weather conditions at Cerro Paranal have lead to the
coverage of 147 events (this resource's events table), but ~60 of
those were already at baseline.</description><table><name>k2c9vst.timeseries</name><description> The Kepler satellite has observed the Galactic center in a campaign
lasting from April until the end of June 2016 (K2/C9). The main
objective of the 99 hours for the microlensing program 097.C-0261(A)
using the ESO VLT Survey Telescope (VST) was to monitor the superstamp
(i.e., the actually downloaded region of K2/C9) in service mode for
improving the event coverage and securing some color-information. Due
to weather conditions, the majority of images were taken in the red
band. These are part of the present release.

The exact pointing strategy was adjusted to cover the superstamp with
6 pointings and to contain as many microlensing events from earlier
seasons as possible. In addition, a two-point dither was requested to
reduce the impact of bad pixels and detector gaps. Consequently, some
events were getting more coverage and have been observed with
different CCDs. The large footprint of roughly 1 square degree and the
complementary weather conditions at Cerro Paranal have lead to the
coverage of 147 events (this resource's events table), but ~60 of
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projection, spectralExtraction, or catalogExtraction)</description><utype>ssa:DataID.CreationType</utype><dataType arraysize="*" xsi:type="vs:VOTableType">char</dataType><flag>nullable</flag></column><column><name>ssa_reference</name><description>URL or bibcode of a publication describing this data.</description><ucd>meta.bib.bibcode</ucd><utype>ssa:Curation.Reference</utype><dataType arraysize="*" xsi:type="vs:VOTableType">char</dataType><flag>nullable</flag></column><column><name>ssa_fluxstaterror</name><description>Statistical error in flux</description><unit>adu</unit><ucd>stat.error;phot.flux.density;em</ucd><utype>ssa:Char.FluxAxis.Accuracy.StatError</utype><stats><min>121.276</min><percentile03>126.849</percentile03><median>171.234</median><percentile97>292.205</percentile97><max>442.982</max><fillFactor>1</fillFactor></stats><dataType xsi:type="vs:VOTableType">float</dataType><flag>nullable</flag></column><column><name>ssa_fluxsyserror</name><description>Systematic error in flux</description><unit>adu</unit><ucd>stat.error.sys;phot.flux.density;em</ucd><utype>ssa:Char.FluxAxis.Accuracy.SysError</utype><stats><fillFactor>0</fillFactor></stats><dataType xsi:type="vs:VOTableType">float</dataType><flag>nullable</flag></column><column><name>ssa_fluxcalib</name><description>Type of flux calibration (ABSOLUTE, CALIBRATED, RELATIVE, NORMALIZED, or UNCALIBRATED).</description><utype>ssa:Char.FluxAxis.Calibration</utype><dataType arraysize="*" xsi:type="vs:VOTableType">char</dataType><flag>nullable</flag></column><column><name>ssa_binsize</name><description>Bin size in wavelength</description><unit>m</unit><ucd>em.wl;spect.binSize</ucd><utype>ssa:Char.SpectralAxis.Accuracy.BinSize</utype><stats><fillFactor>0</fillFactor></stats><dataType xsi:type="vs:VOTableType">float</dataType><flag>nullable</flag></column><column><name>ssa_spectstaterror</name><description>Statistical error in wavelength</description><unit>m</unit><ucd>stat.error;em</ucd><utype>ssa:Char.SpectralAxis.Accuracy.StatError</utype><stats><fillFactor>0</fillFactor></stats><dataType xsi:type="vs:VOTableType">float</dataType><flag>nullable</flag></column><column><name>ssa_spectsyserror</name><description>Systematic error in wavelength</description><unit>m</unit><ucd>stat.error.sys;em</ucd><utype>ssa:Char.SpectralAxis.Accuracy.SysError</utype><stats><fillFactor>0</fillFactor></stats><dataType xsi:type="vs:VOTableType">float</dataType><flag>nullable</flag></column><column><name>ssa_speccalib</name><description>Type of wavelength calibration</description><ucd>meta.code.qual</ucd><utype>ssa:Char.SpectralAxis.Calibration</utype><dataType arraysize="*" xsi:type="vs:VOTableType">char</dataType><flag>nullable</flag></column><column><name>ssa_specres</name><description>Resolution (in meters of wavelength) on the spectral axis</description><unit>m</unit><ucd>spect.resolution;em.wl</ucd><utype>ssa:Char.SpectralAxis.Resolution</utype><stats><fillFactor>0</fillFactor></stats><dataType xsi:type="vs:VOTableType">float</dataType><flag>nullable</flag></column><column><name>t_min_mjd</name><description>(Approximate) earliest timestamp in dataset.</description><unit>d</unit><ucd>time.start;obs</ucd><utype>ts:time.start</utype><stats><min>57490.3</min><percentile03>57490.3</percentile03><median>57490.3</median><percentile97>57505.8</percentile97><max>57509.4</max><fillFactor>1</fillFactor></stats><dataType xsi:type="vs:VOTableType">double</dataType><flag>indexed</flag><flag>nullable</flag></column><column><name>t_max_mjd</name><description>(Approximate) latest timestamp in dataset.</description><unit>d</unit><ucd>time.end;obs</ucd><utype>ts:time.end</utype><stats><min>57551.4</min><percentile03>57555.2</percentile03><median>57557.1</median><percentile97>57557.2</percentile97><max>57557.2</max><fillFactor>1</fillFactor></stats><dataType xsi:type="vs:VOTableType">double</dataType><flag>indexed</flag><flag>nullable</flag></column><column><name>t_0</name><description>Time of largest magnification estimated from a fit assuming a gravitational lens event of pointlike source and lens.</description><unit>d</unit><ucd>time.duration;stat.fit</ucd><stats><min>2.45742e+06</min><percentile03>2.45746e+06</percentile03><median>2.45751e+06</median><percentile97>2.45764e+06</percentile97><max>2.45941e+06</max><fillFactor>1</fillFactor></stats><dataType xsi:type="vs:VOTableType">double</dataType><flag>nullable</flag></column></table></schema></tableset></ri:Resource>