WISE (Wide-field Infrared Survey Explorer) A Clear View of Dark Objects WISE (Wide-field Infrared Survey Explorer) A Clear View of Dark Objects R. Cutri,

Slides:



Advertisements
Similar presentations
Debris disks with CCAT Jane Greaves: ~2012??
Advertisements

National Aeronautics and Space Administration Jet Propulsion Laboratory California Institute of Technology Near-Earth Object Camera NEOCam Amy Mainzer.
Recent Results from NEOWISE Amy Mainzer JPL. WISE 4 imaging channels covering 3 – 25  m 40 cm telescope operating at
General Astrophysics with TPF-C David Spergel Princeton.
PRESS RELEASE  WHO? Astronomers at UCLA and IPAC using the Keck Observatory. –Team members are Ian McLean (PI), Adam Burgasser, Davy Kirkpatrick (IPAC),
11/15/99Norm Herr (sample file) SOLAR SYSTEM The Sun 14 Planets ? Over 100 satellites of the planets Many Comets and asteroids.
MOST - Moving Object Search Tool for NEOWISE and IRSA Kevin Yau 6/11/2010.
1 Non-streaking moving objects from iPTF Frank Masci, Adam Waszczak, Russ Laher & James Bauer iPTF workshop, August 2014.
Brian Smith CS 491B June Recap How big are stars? How old are they? How far away are other stars and galaxies? How hot are they and how does this.
Minor bodies observation from Earth and space: asteroid (2867)Steins A. Coradini, M.T. Capria, F. Capaccioni, and the VIRTIS International Team.
The Transient Universe: AY 250 Spring 2007 Near Earth Asteroids and Kuiper Belt Objects Geoff Bower.
GALEX UV Light-curves of M-Dwarf Flare Stars: “ THE FLARING UV SKY” Barry Welsh, Jonathan Wheatley & Stanley Browne (UC Berkeley) Richard Robinson (Catholic.
Science Team Management Claire Max Sept 14, 2006 NGAO Team Meeting.
2008 March 11-14MOPS Training Session, Tucson, AZ1 Training Session, Tucson The Pan-STARRS Moving Object Processing System.
Intro P an- STARRS Moving Object Processing S ystem Robert Jedicke Institute for Astronomy University of Hawaii.
Synthetic Solar System Model (S3M) MOPS Workshop Tucson, March 11th 2008 Tommy Grav.
WISE Wide-field Infrared Survey Explorer asteroids Galaxy ULIRGs brown dwarfs WISE will map the sky in infrared light, searching for the nearest and coolest.
WISE Wide-field Infrared Survey Explorer asteroids Galaxy ULIRGs brown dwarfs WISE will map the sky in infrared light, searching for the nearest and coolest.
The MIT-IRTF Joint Campaign For NEO Spectral Reconnaissance R.P. Binzel (MIT), A.T. Tokunaga (Univ. of Hawaii)
Constellation Orion Visible Light Constellation Orion Infrared Light.
23.3 The Outer Planets Jupiter: Giant Among Planets  Jupiter’s Moons
Circumstellar disk imaging with WFIRST: not just for wide field surveys any more... Tom Greene (NASA ARC) & WFIRST Coronagraph Team AAS / WFIRST Session.
TALCS Science Results As processed by MOPS Joe Masiero 2/12/08 PS-ISS/OSS Science Meeting.
Today’s APODAPOD  Begin Chapter 8 on Monday– Terrestrial Planets  Hand in homework today  Quiz on Oncourse The Sun Today A100 – Ch. 7 Extra-Solar Planets.
Norio Narita (NAOJ Fellow) Special Thanks to IRD Transit Team Members
Infrared Telescopes 1.
MONGOLIAN-RUSSIAN COOPERATION IN KHURELTOGOOT OBSERVATORY IN THE ISON PROJECT FRAMEWORK N.Tungalag 1, I.Molotov 2, V.Voropaev 2, V.Kouprianov 3, Yu.Krugly.
The NASA/NExScI/IPAC Star and Exoplanet Database 14 May 2009 David R. Ciardi on behalf of the NStED Team.
Small Bodies of the Solar System Pluto, Comets, Asteroids, Meteors and Zodiacal Light.
The Solar System at ~10 mas perspectives for a Fresnel imager Paolo Tanga Marco Delbò Laboratoire Cassiopée, OCA.
LSST: Comprehensive NEO detection, characterization, and orbits Zeljko Ivezic 1 & R. Lynne Jones 1 1 University of Washington The Large Synoptic Survey.
Components of the Universe Lesson 3. Universe All of the things that exist in space.
C. Executive Summary Phil Hinz Principal Investigator.
Effective Mirror Diameter6.5 m Field of view9.6 sq deg Exposure (‘Visit’) Time2x15 s /visit Survey length10 years Data rate~15 TB/night Sky coverage~18,000.
1 The Precision Radial Velocity Spectrometer Science Case.
Astro 101 Slide Set: New Neighbors Developed by the WISE Team 0 Topic: Nearby brown dwarfs Concepts: Solar neighborhood, brown dwarfs, binary systems Missions:
Born Again Disks as Signposts for Planets John H. Debes Space Telescope Science Institute.
First Results from the WIRED Survey John H. Debes (ORAU/GSFC)
MONET PHYSICAL CHARACTERISTICS OF MAIN BELT COMETS Vidojevica 2011 Ivan Milić Andrej Obuljen Stanislav Milošević.
First T Dwarf Discoveries from the 2MASS/Lick All-Sky T Dwarf Search M.W. McElwain (University of California Los Angeles), A.J. Burgasser (University of.
Wide Field Imagers in Space and the Cluster Forbidden Zone Megan Donahue Space Telescope Science Institute Acknowledgements to: Greg Aldering (LBL) and.
Stellar Populations Science Knut Olsen. The Star Formation Histories of Disk Galaxies Context – Hierarchical structure formation does an excellent job.
Searching for Brown Dwarf Companions to Nearby Stars Michael W. McElwain, James E. Larkin & Adam J. Burgasser (UC Los Angeles) Background on Brown Dwarfs.
Diversity of Data in the Search for Exoplanets Rachel Akeson NASA Exoplanet Science Institute California Institute of Technology.
1 Tutorial on Process of Finding Small NEAs Target NEO 2 Open Community Workshop Timothy Spahr Director, Minor Planet Center Smithsonian Astrophysical.
Spacewatch Observations of Near-Earth Objects AAS/DPS 44 th Annual Mtg, Abstract #79, Poster Oct 16 Tues: 15:30-18:00 Robert S. McMillan 1,
Absolute magnitudes of asteroids and a revision of asteroid albedo estimates from WISE thermal observations. * P. Pravec, A. W. Harris, P. Kušnirák, A.
1 Imaging Surveys: Goals/Challenges May 12, 2005 Luiz da Costa European Southern Observatory.
Extrasolar planets. Detection methods 1.Pulsar Timing Pulsars are rapidly rotating neutron stars, with extremely regular periods Anomalies in these periods.
Thessaloniki, Oct 3rd 2009 Cool dusty galaxies: the impact of the Herschel mission Michael Rowan-Robinson Imperial College London.
Small Bodies of the Solar System Pluto, Comets, Asteroids, Meteors and Zodiacal Light.
"The Eventful Universe'', Tucson AZ, March 19, 2010 Transient phenomena and variations in comets, asteroids, centaurs and trans- Neptunian objects Béatrice.
1 Transiting Exoplanet Survey Satellite Daryl Swade Archive Team Meeting June 16, 2014.
K2 observes near the ecliptic, where the bulk of Solar System targets lie Jack J. Lissauer NASA Ames K2 Sci Con, Santa Barbara 2015 November 4.
Astro 101 Slide Set: Finding the Most Luminous Galaxy Developed by the WISE team 0 Topic: Galaxies Concepts: Galaxies, black holes, early universe, infrared.
Submillimeter Observations of Debris Disks Wayne Holland UK Astronomy Technology Centre, Royal Observatory Edinburgh With Jane Greaves, Mark Wyatt, Bill.
Remote observatory ISON-NM Survey of Minor Solar System bodies L. Elenin¹, I. Molotov¹, V. Savanevich², A. Kozhukhov³, A. Bryukhovetskiy³, V. Vlasenko³,
Lecture Outlines Astronomy Today 8th Edition Chaisson/McMillan © 2014 Pearson Education, Inc. Chapter 15.
KBO Discovery Mission Michael Crawford Ben Klein Laura Weber.
Wide-field Infrared Survey Explorer (WISE) is a NASA infrared- wavelength astronomical space telescope launched on December 14, 2009 It’s an Earth-orbiting.
Transient Identification and Classification with WISE Doug Hoffman R. Cutri & T. Jarrett The Eventful Universe, 2010.
VIRTUAL OBSERVATORIES of the FUTURE June 2000 Caltech Solar System Surveys Steven H. Pravdo Jet Propulsion Laboratory.
Finding the Most Luminous Galaxy Developed by the WISE team 0 Topic: Galaxies Concepts: Galaxies, black holes, early universe, infrared studies Mission:
The Search for Another Earth. Exoplanets and the Kepler Space Telescope An exoplanet or extrasolar planet is a planet that orbits a star other than the.
The Universe in the Infrared
(4015) Wilson-Harrington: An Extinct Comet?
Our Solar System The solar system is made up of all the planets that orbits our Sun. In addition to planets the solar system also consists of moons, comets,
Comets & Asteroids in the PTF survey
Where We Are…. As of November 21, 2016, over 3400 confirmed exoplanets had been found, with over 4500 additional candidate exoplanets. We can look at these.
Jupiter and Saturn Jupiter and Saturn are the two largest and best known Jovian planets. Others include Uranus and Neptune. Pluto is considered as a.
Presentation transcript:

WISE (Wide-field Infrared Survey Explorer) A Clear View of Dark Objects WISE (Wide-field Infrared Survey Explorer) A Clear View of Dark Objects R. Cutri, J. Bauer, J. Dailey (IPAC/Caltech) A.Mainzer, J. Masiero (JPL), T. Grav (JHU), R. McMillan (UA) D. Tholen, R. Jedicke, L. Denneau (UH), R. Walker (MIRA), E. Wright (UCLA) and the WISE Team C/2007 Q3 Siding Springs WISE 4.6/12/22 microns

Solar System Science with WISE WISE was designed to search for distant luminous galaxies and nearby brown dwarfs, but it is an excellent detection platform for solar system objects including: –Asteroids, comets, zodiacal dust bands, cometary debris trails, outer solar system bodies such as large Centaurs, Trojans and irregular satellites WISE 3.4, 4.6, 12, and 22  m bands superimposed on SEDs of MBA and NEO asteroids WISE will detect ~100,000 MBAs and hundreds of NEOs, 25%-50% of which should be previously unknown WISE bands sample thermal emission of asteroids −Sensitive to low albedo (dark) objects −Enables size determination −Complements visual light surveys WISE will also enable probes of physical properties & processes such as the Yarkovsky effect and surface thermal properties

NEOWISE: An Enhancement to WISE Data Processing Baseline WISE data processing predicts only known solar system objects within WISE FOV and associates with WISE source detections. –No provision for finding previously unknown moving objects NEOWISE (A. Mainzer, PI) –Create and release a “solar system research-friendly” archive Individual epoch images and database of extracted sources Interfaces to allow searching this archive for moving objects to enable search and pre- discovery following WISE mission (object name or orbit search capability) –Enable the discovery of new solar system objects with WISE Take advantage of WISE capabilities and survey cadence No changes allowed to basic WISE mission or data processing Rely on additional ground-based observations for recovery/confirmation, rather than self- confirmation –Implementation started in February 2009 (L-10 months)!

WISE Moving Object Pipeline System (WMOPS) Exploit the WISE Survey strategy to identify objects that move between exposures On ecliptic, WISE typically yields ~10 observations of a particular object over ~30 hours Identify moving object candidate detection and form position/time tracklets Tracklets are delivered to Minor Planet Center within 10 days of midpoint of WISE observation Rely on additional ground-based observations to get long term orbits, although most WISE observations are long enough to receive a designation. 14’x14’ section of a WISE W3 image covering Sh2-236 made from 11 separate exposures showing serendipitous detections of (1719) Jens 1950 DP

WISE Moving Object Pipeline System (WMOPS) Integrated into the WISE Science Data Procesing System architecture Extensive use of heritage software from PanSTARRS and LSST MOPS (J. Kubica, L. Denneau, J. Myers), MPC (G. Williams) and Auton Lab (CMU)

WMOPS Tracklet Validation Use pipeline artifact flagging to filter out most spurious extractions Require >4 detections to form tracklet 50-65% of tracklets are high reliability and automatically validated Lower reliability validated by visual examination, orbit parameters ~2 runs/week, tracklets/run, ~90% approved for reporting

WMOPS Highlights In 41 days of surveying (MJD ), WISE has detected 15,715 solar system objects −2552 new objects (~60/day) −203 known Jupiter Trojans −29 comets, of which 8 are WISE discoveries −82 NEOs, of which 22 are WISE discoveries [T. Grav] Red = NEOs Green = comets Blue = Centaurs

The Solar System as Seen by WISE Eccentricity Semi-major axis Orbits of objects observed by WISE Red = NEOs Green = comets Blue = Centaurs [T. Grav]

Near-Earth Objects (NEOs) Size-frequency and albedo distributions – 82 objects so far; 22 new w/ optical data – No efforts made to debias yet! **PRELIMINARY** – Of new WISE discoveries, 55% have albedo < 10% – Of previously known NEOs, 29% have albedo < 10% – First retrograde found! 2010 DG56: i=160° – Many NEOs at high inclinations – Many targets are bright to WISE, but faint optically: V=23.9!

Comets Discovered by WISE P/2010 B2 (WISE) P/2010 D1 (WISE) 7 new and 1 reclassifed asteroid

Summary WMOPS demonstrating that moving object detection works! WISE is detecting large numbers of MBAs, NEOs, comets and other solar system objects Ongoing delivery of astrometric data to MPSC – New objects on the NEO Confirmation Page daily – Other observations published in MPC Daily Orbit Updates (DOUs) – Check MPC confirmation page for latest objects of interest Follow-up observations from professional and amateur observers around the world WISE data release schedule – 1 st Atlas and Catalog release Spring 2011 (~50% of survey data) – 2 nd Atlas and Catalog release Spring 2012 (all survey data) – Data access through NASA/IPAC Infrared Science Archive (IRSA)

Backup Slides

The Solar System as Seen by WISE Eccentricity Semi-major axis Orbits of objects observed by WISE Red = NEOs Green = comets Blue = Centaurs [T. Grav]

MBA Diameters and Albedos N Observed Minor Planets THEMIS EOSVESTA FLORA EUNOMIA PRELIMINARY albedo and diameters for known MBAs detected by WISE so far. Dot size proportional to diameter. Color encodes albedo - grey is darkest, Increasing through red, green, blue. (Masiero et al. 2010)