Stellar Surveys at the Australian Astronomical Observatory (AAO)

Similar documents
The HERMES project. Reconstructing Galaxy Formation. Ken Freeman RSAA, ANU. The metallicity distribution in the Milky Way discs Bologna May 2012

The power of chemical tagging for studying Galactic evolution

Matthias Steinmetz. 16 Oct 2012 Science from the Next Generation Imaging and Spectroscopic Surveys 1

Overview of Gaia-ESO Survey results based on high-resolution spectra of FGK-type stars Rodolfo Smiljanic! (Gaia-ESO WG11 co-coordinator)

Chemical tagging of FGK stars: testing membership to stellar kinematic groups

Observations/Expansions In Astronomy & Astrophysics

Galac%c Unprecedented Precision (0.01 dex)

Radial Velocity Surveys. Matthias Steinmetz (AIP)

The Accretion History of the Milky Way

JINA Observations, Now and in the Near Future

(Present and) Future Surveys for Metal-Poor Stars

Are open clusters chemically homogeneous? Fan Liu

Galactic archaeology with the RAdial Velocity Experiment

Observational(!) Project: AGB stars in Galactic Globular Clusters Are They Chemically Different to Their Fellow RGB, HB and MS Stars?

Galactic Bulge Science

The Gaia-ESO Public Spectroscopic Survey a lesson for our community in use of limited telescope access. Gerry Gilmore Sofia Randich Gaia-ESO Co-PIs

CNO and F abundances in the globular cluster M22 (2012, A&A, 540, 3)

Outline. ESA Gaia mission & science objectives. Astrometric & spectroscopic census of all stars in Galaxy to G=20 mag.

Tests of MATISSE on large spectral datasets from the ESO Archive

Fundamental Stellar Parameters from Spectroscopic Surveys off the MW plane*: Role of Insterstellar Reddening and Stellar Activity

Detailed chemical abundances of M-dwarf planet hosts from APOGEE observations

From the first stars to planets

The Gaia-ESO Spectroscopic Survey. Survey Co-PIs. Gerry Gilmore (IoA, Cambridge) & Sofia Randich (INAF/Arcetri) >300 CoIs

Gaia DR2 and/versus RAVE DR5: application for the semi-analytic thin disk model

SkyMapper and EMP stars

Neutron-capture element abundances in the globular clusters: 47 Tuc, NGC 6388, NGC 362 & ω Cen

The Galactic Halo As Seen By The Hamburg/ESO Survey. Judy Cohen (Caltech)

Extremely Metal-Poor Stars

Metal-poor stars observed by the Gaia-ESO Survey (and other large surveys)

Metal Poor Stars: A Review for Non-Observers. Charli Sakari

Bayesian inference using Gaia data. Coryn Bailer-Jones Max Planck Institute for Astronomy, Heidelberg

AGB stars as laboratories for nuclear physics

The GALAH survey: scientific motivation

Outline. c.f. Zhao et al. 2006, ChJA&A, 6, 265. Stellar Abundance and Galactic Chemical Evolution through LAMOST Spectroscopic Survey

Determination of [α/fe] and its Application to SEGUE F/G Stars. Young Sun Lee

Follow-up observations of EMP stars identified in SDSS and LAMOST

Differential abundances in the HAT-P-4 binary system

Age- Abundance Trends in the Solar Neighborhood. Diane Feuillet MPIA April 25, 2017 IAUS 330 Nice, France

Nucleosynthesis in heliumenriched

Oxygen in red giants from near-infrared OH lines: 3D effects and first results from. Puerto de la Cruz, May 14, 2012! Carlos Allende Prieto!

The Gaia-ESO Survey: Detailed Abundances in the Globular Cluster NGC 4372

Thorium (Th) Enrichment in the Milky Way Galaxy

Objectives & Significance

Rubidium, zirconium, and lithium production in massive AGB stars

Chemical Abundances in Globular Clusters

Objectives & Significance

Exoplanetary Science in Australia: Detection, Characterisation, and Destruction Rob Wittenmyer

arxiv: v1 [astro-ph.sr] 12 Dec 2018

High resolution spectroscopy of two metal-poor red giants: HD and HD

The GALAH Survey: Scientific Motivation

Data-driven models of stars

Objectives & Significance

The GALAH survey: relative throughputs of the 2dF fibre positioner and the HERMES spectrograph from stellar targets

Galaxy Evolution at High Resolution: The New View of the Milky Way's Disc. Jo Bovy (University of Toronto; Canada Research Chair)

Signatures of Peculiar Supernova Nucleosynthesis in Extremely α-enhanced Metal-poor Stars

The Monash Chemical Yields Project

The chemical evolution of the Milky Way

Observational Constraints on the r-process from Halo r-ii Stars

THE GALACTIC BULGE AND ITS GLOBULAR CLUSTERS: MOS. B. Barbuy

Combining Gaia DR1, DR2 and Matthias Steinmetz (AIP) a preview on the full Gaia dataset. Matthias Steinmetz (AIP)

Lecture 11: Ages and Metalicities from Observations A Quick Review

Spectroscopy of giants and supergiants! Maria Bergemann MPIA Heidelberg"

WEAVE Galactic Surveys

How Massive is the Milky Way?

Local Group cosmology with ngcfht

Chemistry & Dynamics of the Milky Way From Before Hipparcos Until Gaia

Evolution and nucleosynthesis of AGB stars

Sun. Sirius. Tuesday, February 21, 2012

Data simulator for the HERMES instrument

The Apache Point Observatory Galactic Evolution Experiment. Ricardo Schiavon

Galactic, stellar (and planetary) archaeology with Gaia: The galactic white dwarf population

RAVE The Radial Velocity Experiment

Oxygen in AGB stars and the relevance of planetary nebulae to mapping oxygen in the Universe

Proposition de recherche / Onderzoeksvoorstel ORB Doctorant / KSB Doctoraatsstudent 2016

Nucleosynthesis in core-collapse supernovae. Almudena Arcones

Reconstructing Fossil Sub-structures of the Galactic Disk: Clues from Abundance Patterns of Old Open Clusters and Moving Groups

Star-planet connection:

High-resolution elemental abundance analysis of the Hyades supercluster

BRANCHINGS, NEUTRON SOURCES AND POISONS: EVIDENCE FOR STELLAR NUCLEOSYNTHESIS

Integrated-light spectroscopy of extragalactic star clusters

Automated analysis: SDSS, BOSS, GIRAFFE

STARS. J. J. COWAN University of Oklahoma

The MonKey Project. An Update on Stellar Yields

13 Synthesis of heavier elements. introduc)on to Astrophysics, C. Bertulani, Texas A&M-Commerce 1

arxiv: v1 [astro-ph.ga] 2 Apr 2013

arxiv: v1 [astro-ph.ga] 17 Feb 2015

PoS(NIC XII)193. Heavy elements in the early Galaxy. Terese Hansen University of Heidelberg, ZAH, LSW

Substructure in the Galaxy

BRASS. The Belgian Repository of fundamental Atomic data and Stellar Spectra. Contact day meeting 19th September 2017

Abundance distribution in the Galactic thick disk

WHAT DO RADIAL VELOCITY MEASUREMENTS TELL ABOUT RV TAURI STARS?

The Chemical Compositions and Ages of Globular Clusters*

Brian P. Schmidt Wolfgang Kerzendorf, Anna Frebel, Martin Asplund, Ken Nomoto, Philipp Podsiadlowski

金属欠乏星の r プロセス元素組成. r-process abundance of metal-poor stars

STELLAR HEAVY ELEMENT ABUNDANCES AND THE NATURE OF THE R-PROCESSR. JOHN COWAN University of Oklahoma

CHARA 2016: Adaptive Optics and Perspectives on Visible Interferometry

Making precise and accurate measurements with data-driven models

Supernova Explosions. Novae

The Large Sky Area Multi- Object Spectroscopic Telescope (LAMOST)

arxiv: v1 [astro-ph.ga] 20 Jun 2013

Transcription:

Feeding the Giants Ischia, 30 August 2011 Stellar Surveys at the Australian Astronomical Observatory (AAO) The former Anglo-Australian Observatory became a Division of the Australian Commonwealth Department of Innovation, Industry, Science and Research (DIISR) on 1 July 2010

AAO North Ryde (2012)

RAVE: A Snack For The Giants Feeding the Giants Ischia, 30 August 2011 Fred Watson and the RAVE Collaboration

RAVE PI: MATTHIAS STEINMETZ, AIP

RAVE... Observations with 1.2-m UKST

RAVE...

RAVE...

RAVE... RAVE s progress

RAVEing on... Pilot project started Apr 2003; full time Aug 2005 Total fields (telescope pointings) to Aug 2011: 6,300 Total spectra to Aug 2011: 511,000 Total unique stars to Aug 2011: 431,000 Annual data rate 65,000 to 95,000 spectra

RAVE... Black = 2250 spectra per field Includes repeat sequences (logarithmic cadence)

RAVEing on...

Still RAVEing on... www.rave-survey.iap.de/rave Data Releases * DR3 Jan 11 * DR4 end 11 * DR5 2012 * FDR 2013

Still RAVEing on... www.rave-survey.iap.de/rave Data Releases * DR3 Jan 11 * DR4 end 11 * DR5 2012 * FDR 2013 Spectra * Calcium triplet region for stars with 8<I<12 * R ~ 7500 * Velocity precision everwhere better than 2 km/s * Errors in Teff, log g and Fe/H depend on mag.

RAVEing mad... Science

RAVEing mad... Typical RAVE data frames zoomed at left to show highvelocity stars.

RAVEing mad... ~25 science papers in the last five years. In past year, 12 refereed papers, 3 PhD theses accepted. Wide range of galactic topics: High-velocity stars Stellar distance determinations Thin and thick disc formation mechanisms Metal-poor stars Eccentricity distribution in thick disc stars New stellar streams

RAVEing mad... Representation of the Aquarius Stream within the galactic disc. The Sun is on the left, close to the apex of the stream (M.E.K. Williams, et al., Ap.J. 728, 102, 2011.)

RAVE spectrum..? $A vs. $A vs. $A vs. $US $A vs.

But unusual things happen in Australia...

GALAH: Galactic Archaeology with HERMES Feeding the Giants Ischia, 30 August 2011 Fred Watson and the GALAH Collaboration

GALAH Collaboration: Ken Freeman (ANU)(Co-PI), Joss Bland-Hawthorn (U.Syd) (Co-PI), Gayandhi De Silva (AAO)(Co-PI) Asplund (MPA) (plus Lind, Bergemann), Bessell (ANU), Cannon (AAO), Cole (UTas), Cottrell (Christchurch) (plus Simpson), Da Costa (ANU), Dobbie (AAO), Ellis (USyd), Flynn (USyd), Karakas (ANU), Karlsson (USyd), Keller (ANU), Kobayashi (ANU), Lattanzio (Monash), Lewis (USyd), Lugaro (Monash), Monnet (AAO), Munari (Asiago), Murphy (ANU), Norris (ANU), O Toole (AAO), Parker (AAO,Macq), Sharma (USyd), Sharp (ANU), Sneden (UTex), Watson (AAO), Wylie de Boer (ANU), Yong (ANU), Zucker (AAO/Macquarie), Zwitter (Ljubljana)

GALAH... HERMES

2dF on the AAT...

HERMES 400-fibre spectrograph Minimum end-to-end efficiency 10% R~28,000 (up to 50,000 with slitlets) Four channels ~ λ/25 wide for GA Centred on 478nm, 577nm, 661nm, 774nm Th-Xe arc calibration Thermal control to 0.5C First light late 2012

HERMES

HERMES

HERMES

GALAH (R. Jay Gabany, Blackbird Observatory

RV better than 20 m/s Huge synergy with GAIA

Identify stellar accretion events, particularly the earliest ones representing the founding blocks of the galactic disc Measure accurate chemical abundances of elements involved in the main nucleogenesis processes - chemical tagging (accuracy ~0.5%) 1 million stars to V=14 ~1,000 AAT observing nights Includes light (Li), odd-z (Na, Al), alpha (O, Mg, Si, Ca, Ti), Fe-peak (Cr, Mn, Fe, Co, Ni, Zn), light s-process (Y, Zr), heavy s-process (Ba, La) and r- process (Eu) elements... Perfect diet for Giants

Finally, news from a different giant...

RAVE and GALAH Thanks, everyone

RAVE and GALAH Thanks, everyone