Hubble Deep Fields Initiative. STUC Meeting November 8, 2012 K. Sembach

Similar documents
Hubble Space Telescope Frontier Fields MidTerm Review

Exploring the Depths of the Universe

Astro 101 Slide Set: Multiple Views of an Extremely Distant Galaxy

Yale Center for Astronomy and Astrophysics, New Haven, USA YCAA Prize Fellowship

Dr. Brandon Lawton Hubble Science Briefing. Hubble s 25 th Anniversary - Hubble s Views of the Deep Universe

The Frontier Fields: past, present, and future

Hubble observations of very high redshift galaxies: looking back 13 billion years

Observational Studies of Galaxy Formation: Reaching back to ~500 Myr after the Big Bang. Rychard Bouwens (UC Santa Cruz / Leiden)

The Hubble Legacy Fields (HLF-GOODS-S) v1.5 Data Products: Combining 2442 Orbits of GOODS-S/CDF-S Region ACS and WFC3/IR Images.

The Earliest Galaxies: Exploring Cosmic Sunrise with Hubble, Spitzer, and JWST

High-Redshift Galaxies: A brief summary

Hubble Science Briefing April 7, 2011

Galaxy Build-up in the First 2 Gyrs

The Making of the Hubble Ultra Deep Field

The First Billion Year of History - Galaxies in the Early Universe. Stephen Wilkins, Silvio Lorenzoni, Joseph Caruana, Holly Elbert, Matt Jarvis

TELESCOPES POWERFUL. Beyond the Book. FOCUS Book

A Look Back: Galaxies at Cosmic Dawn Revealed in the First Year of the Hubble Frontier Fields Initiative

STScI at the AAS 231: January 2018, Washington, D.C.

Opportunities with the James Webb Space Telescope

Galaxy Formation and Evolution at z>6: New Results From HST WFC3/IR

arxiv: v1 [astro-ph] 15 Dec 2007

Galaxies. Beyond the Book. FOCUS Book. Make a model that helps demonstrate how the universe is expanding. Follow these steps:

The sizes of z ~ 6-8 lensed galaxies from the Hubble Frontier Fields data of Abell 2744

The Cosmic History of Star Formation. James Dunlop Institute for Astronomy, University of Edinburgh

Galaxies at Cosmic Dawn: Exploring the First Billion Years with Hubble and Spitzer Implications for JWST

Star Forming Galaxies as Revealed by Gravitational Lensing and JWST

HST AND BEYOND EXPLORATION AND THE SEARCH FOR ORIGINS: A VISION FOR ULTRAVIOLET- OPTICAL-INFRARED SPACE ASTRONOMY

Exploiting Cosmic Telescopes with RAVEN

MIRI The Mid-InfraRed Instrument for JWST The James Webb Space Telescope

The First Galaxies: Evolution drivers via luminosity functions and spectroscopy through a magnifying GLASS

James Webb Space Telescope Early Release Science

Spitzer Space Telescope Cycle-6 Exploration Science Programs

A Search for High Redshift Galaxies behind Gravitationally Lensing Clusters

Astro 301/ Fall 2006 (50405) Introduction to Astronomy

SUPPLEMENTARY INFORMATION

HST/NICMOS Observations of the Near Infrared Background

Cycle 20 Results and Cycle 21 Preparations. 8 November /8/2012 C20 Results and C21 Preparations

The evolution of bright galaxies at z > 6

Astronomers push the edges of final frontier, find farthest galaxy

Hubblecast Episode 91: What does the future hold for Hubble? Part I. Visual notes

Windows to the Past: Using Gravitational Telescopes to Study our Cosmic Origins

The Near-Infrared Spectrograph on JWST: Killer Science Enabled by Amazing Technology. Jason Tumlinson STScI Hubble Science Briefing Nov.

James Webb Space Telescope Cycle 1 Call for Proposals

Unveiling the nature of bright z ~ 7 galaxies with HST and JWST

Scientific Capability of the James Webb Space Telescope and the Mid-InfraRed Instrument

Exoplanetary Science with Mul4- Object Spectrographs (and GLAO) Norio Narita (NAOJ)

Stefanie Milam Deputy Project Scientist for Planetary Science NASA GSFC January 12, 2017

Quantifying the (Late) Assembly History of Galaxies. Michael Pierce (University of Wyoming)

Astronomers discover an active, bright galaxy "in its infancy"

Predic'ng Future Space Slitless Spectra Using the WFC3 Infrared Spectroscopic Parallels (WISP)

A Spectroscopically-Confirmed Double Source Plane Lens in the HSC SSP Tanaka, Wong, et al. 2016, ApJ, 826, L19

Probing the First Sources of Light with the James Webb Space Telescope. M. Stiavelli STScI, Baltimore

Super-Eight: The brightest z~8 Galaxies Cycle: 24, Proposal Category: GO (JWST Initative) (Availability Mode: SUPPORTED)

arxiv: v1 [astro-ph.ga] 21 May 2016

Synergy between the Thirty Meter Telescope and the James Webb Space Telescope: When > 2.

THE ABUNDANCE OF STAR-FORMING GALAXIES IN THE REDSHIFT RANGE 8.5 TO 12: NEW RESULTS FROM THE 2012 HUBBLE ULTRA DEEP FIELD CAMPAIGN

HubVis: Software for Gravitational Lens Estimation and Visualization from Hubble Data

TMT and Space-Based Survey Missions

Outline: Part II. The end of the dark ages. Structure formation. Merging cold dark matter halos. First stars z t Univ Myr.

The James Webb Space Telescope

High Redshift Universe

STScI at the AAS 231: January 2018, Washington, D.C.

Overview of JWST GTO Programmes

Galaxies Across Cosmic Time

The WFIRST High La/tude Survey. Christopher Hirata, for the SDT November 18, 2014

Imaging with Micado at the E-ELT. WORKSHOP: Imaging at the E-ELT

Subaru/WFIRST Synergies for Cosmology and Galaxy Evolution

Scientific Role of the James Webb Space Telescope in New Worlds, New Horizons

James Webb Space Telescope Cycle 1 Call for Proposals. Stefanie Milam JWST Deputy Project Scien;st for Planetary Science

A New Population of Active Galactic Nuclei

Keck Observations of 150 GRB Host Galaxies Daniel Perley

Searching for Other Worlds

9. Evolution with redshift - z > 1.5. Selection in the rest-frame UV

Galaxy Collisions & the Origin of Starburst Galaxies & Quasars. February 24, 2003 Hayden Planetarium

The James Webb Space Telescope Overview

Searching for Other Worlds: The Methods

A Galaxy Full of Black Holes. Harvard-Smithsonian Center for Astrophysics Origins Education Forum - STScI 1 Navigator Public Engagement Program - JPL

Galaxies. The majority of known galaxies fall into one of three major classes: spirals (78 %), ellipticals (18 %) and irregulars (4 %).

Princeton Astrophysics Community Meeting

A Large Monolithic-Aperture Optical/UV Serviceable Space Telescope Deployed to L2 by an Ares-V Cargo Launch Vehicle

LSST, Euclid, and WFIRST

Galaxy morphology. some thoughts. Tasca Lidia Laboratoire d Astrophysique de Marseille

James Webb Space Telescope Cycle 1 Call for Proposals and Update on WFIRST

The Star Formation Observatory (SFO)

Chandra: the Next Decade

IRAC Deep Survey Of COSMOS

NIRSpec Multi-Object Spectroscopy of Distant Galaxies

Deep Surveys or How We Learn About the Early Universe When We Can t Measure All that Would Be Nice!

JWST/NIRSpec. P. Ferruit. (ESA JWST project scientist) Slide #1

Physics of Galaxies 2016 Exercises with solutions batch I

How Common Are Planets Around Other Stars? Transiting Exoplanets. Kailash C. Sahu Space Tel. Sci. Institute

Subaru GLAO: Comparisons with Space Missions. I. Iwata (Subaru Telescope) 2011/08/ /05/28 small revisions 2013/06/04 include JWST/NIRISS

Hubble Science Briefing

James Webb Space Telescope Townhall: Preparing for Launch!

Ac#ve Galaxies, Colliding Galaxies

2.1 Hubble Space Telescope

arxiv: v2 [astro-ph.co] 6 Jan 2014

Science with the Intermediate Layer

ASTRONOMY. Chapter 18 THE STARS: A CELESTIAL CENSUS PowerPoint Image Slideshow

Dynamics of High Redshift Galaxies M. Stiavelli, STScI Baltimore

Transcription:

Hubble Deep Fields Initiative STUC Meeting November 8, 2012 K. Sembach

Hubble s Full Color Ultra Deep Field (aka Extreme Deep Field ) Combined all public data available at?me of release Issued as a Photo Release + Webinar/Video + Google Hangout Other UDF programs have completed recently and will provide s?ll deeper views: - Ellis (Deep WFC/IR) - 128 orbits - Teplitz (Deep WFC3/UV) - 90 orbits Credit: NASA, ESA, G. Illingworth, D. Magee, and P. Oesch (UCSC), R. Bouwens (Leiden University), and the HUDF09 Team

Hubble Deep Field Initiative (HDFI) James Bullock (UC- Irvine) [Chair] Mark Dickinson (NOAO) Steven Finkelstein (UT Aus?n) Adriano Fontana (INAF, Rome) Ann Hornschemeier Cardiff (GSFC) Jennifer Lotz (STScI) Priya Natarajan (Yale) Alexandra Pope (U. Mass) Brant Robertson (Arizona) Brian Siana (UC- Riverside) Jason Tumlinson (STScI) Michael Wood- Vasey (Pigsburgh) The Commigee was charged by the STScI Director to: Solicit input from the astronomical community in defining the science goals and recommenda?ons. Define the science case and a set of science goals for a new set of ultra- deep imaging fields with sensi?vity depths comparable to those of the HUDF and HUDF- 09 infrared follow- up. Provide an assessment of the urgency of pursuing this science. Assess the prospects for near- field science that can be achieved with these deep- field observa?ons. Recommend the number of fields, loca?on, filters, and depths that should be obtained to meet the science goals.

HDFI: Background and Process STScI solicited community input (pro/con) on the idea of devo?ng?me to a new deep field ini?a?ve ( Deep Fields Beyond the HUDF ) Responses were due August 31, 2012 Commigee reviewed and discussed 32 white papers submiged by the community Considered a broad set of topics Deep blank fields Fields lensed by foreground clusters Grism observa?ons Deep fields in parallel with COS spectroscopy Synergy with JWST and other observatories, E/PO, implementa?on strategies, etc The commigee presented a unanimous recommenda?on to the Director.

HDFI: The High Redshift Frontier Current fron?er is z = 8-10 but we only see the brightest galaxies that are too rare to be the progenitors of ~L* galaxies in the local Universe. Need to go deeper Cosmic variance at all redshils is a concern, but especially at z > 7. z ~ 7-10 galaxies which are magnified enough for spectroscopic follow- up are (very) rare, as are z ~ 5-7 galaxies bright enough for studies of internal structure. Need to go wider Zheng/CLASH HDFI + Lensed Fields + = Blank Fields = New parameter space

HDFI: Science Aims Discover new popula?on of z=5-10 galaxies,10-100x fainter than any known The building blocks of typical ~L* galaxies in the local universe. Characterize stellar popula?ons of faint galaxies at high redshil and solidify our understanding of stellar mass func?ons at the earliest?mes. Do astrophysics at z > 8 by finding galaxies magnified enough for spectroscopic follow- up and/or stretched out enough to measure sizes and internal structure. Provide, for the first?me, a sta?s?cally meaningful morphological characteriza?on of star forming galaxies at z>5. By imaging op?mal galaxy cluster lenses, HST can detect and study galaxies that are as faint as anything detectable by JWST in a blank field.

HDFI: New Fron?ers at High Redshil Current Blank Fields WIDER (3-5)x increase in galaxy counts with respect to the HUDF and its parallels DEEPER Clusters magnify by up to 10-100x, reaching L* galaxy progenitors and equalling NIRcam in blank fields. blank field revealed horizon by lensing Proposed Blank Fields JWST/NIRCam blank

HDFI: The Proposed Program (Director s Discretionary time only) Six new fields centered on strong lensing clusters AND six nearby parallel blank fields. Images in 6-7 bands to AB ~ 28.7 with ACS and WFC3/IR in 140 orbits per field (840 orbits in the proposed program) Clusters are chosen from a candidate list of ~25, weighing strength/quality of lensing map, galac?c foregrounds, JWST visibility, Spitzer scheduling, and visibility to other facili?es (ALMA, EVLA, future GSMTs). Exact choice of clusters is s?ll pending and will be announced to the community in the near future.

HDFI: Proposed Next Steps Implementa?on Convene HDFI Implementa?on Team Final selec?on of clusters based on science priori?es from panel and prac?cal considera?ons Define the actual observing program, coordinate with other observatories (Spitzer in par?cular), create observing specifica?on, and build long range scheduling plan Community Engagement Announce ini?a?ve to the community if Mag approves Establish website for regular updates and reference Issue guidance on program so GOs can propose to supplement or analyze these data in C21. Engage lensing experts to support the broader community with high- quality, user- friendly lensing maps, and support their maintenance. Upcoming lensing workshop at STScI (April 2013).