Astrophysics at the frontier: the search for gravitational waves

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Utah State University DigitalCommons@USU Meeting Talks Astrophysics 11-28-2006 Astrophysics at the frontier: the search for gravitational waves Shane L. Larson Utah State University Follow this and additional works at: https://digitalcommons.usu.edu/astro_meettalk Recommended Citation Larson, Shane L., "Astrophysics at the frontier: the search for gravitational waves" (2006). Meeting Talks. Paper 2. https://digitalcommons.usu.edu/astro_meettalk/2 This Presentation is brought to you for free and open access by the Astrophysics at DigitalCommons@USU. It has been accepted for inclusion in Meeting Talks by an authorized administrator of DigitalCommons@USU. For more information, please contact dylan.burns@usu.edu.

ASTROPHYSICS at the FRONTIER: the search for gravitational waves Shane L. Larson Department of Physics Weber State University slarson@weber.edu University Briefing Weber State University 28 November 2006

The Cosmos as We Know It... LIGHT has been our messenger from the Universe.

Our Eyes Light has many forms (visible, infrared, radio, x-ray,...) and we have a myriad of instruments to detect it.

A New Kind of Astronomy Here at the start of the 21st Century we are looking at the Cosmos in a fundamentally new way Not with light, but with gravity

What are gravitational waves? Einstein taught us that space and time were a single entity that forms the underlying fabric of the Cosmos Gravitational waves are ripples in the fabric of spacetime which propagate through the Universe

LISA (joint NASA/ESA mission) Launch ~2014 Baseline: 5 million kilometers

Foundations of GW Astronomy Gravitational wave astronomy is interdisciplinary, and has three main thrusts: TECHNOLOGY SCIENCE ANALYSIS (data analysis) ASTROPHYSICS & GRAVITATIONAL SCIENCE

Flowdown from GW Astronomy TECHNOLOGY GW detectors require advanced optics GW detectors require advanced laser systems GW detectors require advanced materials GW detectors require advanced control systems SCIENCE ANALYSIS (data analysis) GW science requires advanced signal processing GW science requires high performance computing GW science requires environmental monitoring

Vignette 1: Small Stars & Black Holes with Marc Freitag (IoA, Cambridge) & Clovis Hopman (Leiden) Compact stellar mass objects sometimes get captured by massive galactic black holes The inspiral encodes a map of the black hole spacetime in the gravitational waves 40 30 y/m 20 10 0-10 1 10-17 0 20 40 60 80 x/m 5 10-18 h+ 0-5 10-18 -1 10-17 0 2000 4000 6000 8000 10000 t/m

Vignette 2: The Shape of the Galaxy with Matt Benacquista (UT-Brownsville) & Brett Taylor (Radford) LISA will see compact binary stars everywhere in the Milky Way galaxy The locations of these stars encodes a map of the shape and history of stellar evolution in the galaxy Galactic modeling & science analysis together

SCIENCE My Future at Weber State Galactic modeling Multi-messenger astronomy: working with gravitational waves and light together GRAVITATIONAL WAVE TEXTBOOK G.R.A.I.L. (Gravitational-wave Resource And Information Library) MINIONS (student research) I have a box of projects that need done Undergraduates can work in GW astronomy, and publish in mainstream journals [ Zaleski & Larson ~2007; Larson, Rubbo, Zaleski & Larson 2006; Rubbo, Larson, Larson & Zaleski 2006; Hiscock, Larson, Routzahn & Kulick 2000; Clark, Hiscock & Larson 1999 ]

Challenges for GW Astronomy COMMUNITY BUILDING GW astronomy is very interdisciplinary Needs to be better communication between gravitational theory, experimental physicists, and astrophysicists. BRAIN POWER The GW astronomy effort is extremely understaffed Need to have more professors in the field Need to train more young people in the field Need to retain young people in the field

G.R.A.I.L. Proposed to NASA IDEAS Develop materials to use in college classrooms to teach about gravitational wave astronomy Audio Waveform Library Collaboration between 19 Institutions (so far) Weber State (Larson PI) Weber State (Johnston) Mankato (Tom Brown) Franklin & Marshall (Andrea Lommen) Colorado College (Patti Purdue) Youngstown State (Pat Durrell) U Maryland (Cole Miller) Salish-Kootenai College (Tim Olson) UT Brownsville (Matt Benacquista) Penn State (Sam Finn) SUNY-Geneseo (Savi Iyer) Montana State (Bill Hiscock) Pomona College (Tom Moore) Radford University (Rhett Herman) St. Louis University (Greg Comer) Truckee Meadows CC (Dan Loranz) Highline CC (Gregory Reinemer) U Central Florida (Hanno Brueckner) Washington State (Sukanta Bose) East Tennessee State (Ricco Ignace)