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Asterseismology and Gaia Asteroseismology can deliver accurate stellar radii and masses Huber et al 2017 compare results on distances from Gaia and asteroseismology for 2200 Kepler stars

Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

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Page 1: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

Asterseismology andGaia

Asteroseismology candeliveraccuratestellarradiiandmassesHuberetal2017compareresultsondistancesfromGaiaand

asteroseismology for2200Kepler stars

Page 2: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

Asteroseismology

Surfaceconvectionzonesexcitenon-radialoscillations– standingsoundwaves

Page 3: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

DanielHuber

Individual modes of oscillation are described in terms of spherical harmonics. The oscillations are described by their frequency ν and three quantum numbers: the radial order n indicating the number of nodes in the radial direction, the spherical degree l indicating the number of nodal lines on the surface, and the azimuthal order m indicating the number of nodal lines that pass through the rotation axis.

Hekker 2017

Page 4: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

DanielHuberTtemperature,mumolecularweight

Page 5: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

DanielHuber

Page 6: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

DanielHuber

Page 7: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

DanielHuber

Page 8: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

DanielHuber

Sizeofcavity=stellarradius!

Page 9: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

Dispersionrelation

Applieswhenwavesofdifferentwavelengthshavedifferentvelocities- Oneexampleispropagationoflightthroughglass- Anotherisstandingwavesinastar

Frequencyfrelatedto

soundspeed=wavelengthxfrequency

Relatesfrequency,soundspeed,radius

Page 10: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

Integrate1/(soundspeed)throughthestar

DanielHuber

Page 11: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

DanHuber

Page 12: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

Asteroseismology givesadirectmeasureofstellarmeandensity

Page 13: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

Measuringlogg

Hekker 2017

IfwecanmeasureTeff,wecanobtainlogg,mass

Page 14: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

Stellarradiusfromfrequencydata

Huberetal2017

Page 15: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

Asteroseismology summary

• FrequenciesofFourierspectrumofoscillationsgivestellarmeandensityandradiusdirectly

• WiththeadditionofTeff,wecanalsoobtainloggandstellarmass

Page 16: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

Gaiasatellite• LaunchedDec2013• OrbitsL2(secondLagrangepoint,dynamicallystable,noEarthoccultation)• GaiaDataRelease1(DR1),includingTGAS(astrometricsolutionincludingpropermotionsderivedfromTychoandDR1positions)released2016• DR2expectedApril2018

Page 17: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

Gaiaprecision

GaiaDR1paper2016– TGASerrorsoforder.3mas

Page 18: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

Hipparcos hadgeometricdistortionsinreferenceframe… muchlesswithGaia

Brownetal17,GaiaDR1

Hipparcos linkedtoaccurateradioVLBIreferenceframeusingonly12radiostars!Gaiahas295“defining”compactradiosourcestotieitintotheVLBIframe

Kovalevskyetal97

Page 19: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves
Page 20: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

Radiusandlogg fromKeplerAsteroseismic satellite

SpectroscopicTeff and[Fe/H]fromSDSSAPOGEE

griz photometry2MASSJHKs

Page 21: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

Parallaxfromasteroseismology?

RadiusfromasteroseismologyTeff fromhigh-resspectra->L

BolometriccorrectionfrommodelsusingTeff,logg,[Fe/H],Av

LandBCgiveMv,thenusem-M=5logd– 5+Av

Page 22: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

RadiusfromGaia?

• Bayesiandistancesfrom1/parallax• Thendocalculationinreverse

• ORestimatereddeningusingisochronesandsyntheticphotometryingriz,JHKs,comparewithactualvaluesofmagnitudes/colors

Page 23: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

Extinctionestimatefrom3Dmodelincl Schlafly correction

Notethatthesearesmall…..

Page 24: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

Test

TestBCsusingtwomethods

SystematicerrorsduetoBCs<1%

Page 25: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

GaiaparallaxesvsSeismologyderivedones

Asteroseismic-derivedparallaxesarealittlelarger

Page 26: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

Eclipsingbinaryresultnotsupported(reddashesordots)

Strongestoffsetforlargeparallax(dwarfs)

Page 27: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

CheckoutTeff :distancesscaleasTeff^2.5

CanderiveTeff usingspectroscopicmethods(donehere)ORphotometric.

Inparticular,theInfraRed FluxMethod(IRFM)isaphotometricmethodwhichiswelltiedtofundamentalphysicsbuthasanoffsetoforder100Kfromspectroscopictemperatures

Redidasteroseismic parallaxestimatesusingdifferenttemperaturescale,for(morediscrepant)dwarfsandsubgiants only

Page 28: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

HotterTeff scale(IRFM)reducesdifferencebetweenparallaxesto2%“Asteroseismic andTGASdistancesagreewithinafewpercentoverseveralordersofmagnitude”

Page 29: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

Thefuture:asteroseismic distancesbetterthanGaia’send-of-missiononesford>3kpc

Page 30: Asterseismologyand Gaiaastroweb.cwru.edu/heather/323.17/asteroseismology.pdf · Asteroseismology Surface convection zones excite non-radial oscillations – standing sound waves

Summary

Gaia’sTGASparallaxesareprettydarngood… comparisonwithindependentlyestimatedasteroseismic parallaxesshowdifferencesatonlyafewpercent

AttheendoftheGaiamission,asteroseismic distancesforredgiantswillstillbemoreprecisethanGaiaparallaxes.