Tiffany Summerscales Ph.D. Department of Physics Andrews University Haughey Hall, 223 Berrien Springs, MI (269)

Similar documents
Gregory Ogin 516 E Pine St. Apt 4 Walla Walla, WA (626) August 22, 2015

LIGO Observational Results

Searching for gravitational waves. with LIGO detectors

Bernard Frederick Schutz

J.R. Sanders. 201 Physics Building, Syracuse, NY

Search for Gravitational Wave Transients. Florent Robinet On behalf of the LSC and Virgo Collaborations

Gravitational Wave Astronomy

The Present Gravitational Wave Detection Effort

Status and Prospects for LIGO

Gravitational Waves and LIGO

Robert L. Ward. Caltech MC (626)

Synergy with Gravitational Waves

LIGO Status and Advanced LIGO Plans. Barry C Barish OSTP 1-Dec-04

Takaaki Kajita, JGRG 22(2012) Status of KAGRA RESCEU SYMPOSIUM ON GENERAL RELATIVITY AND GRAVITATION JGRG 22. November

Plans for the LIGO TAMA joint search for gravitational wave bursts

Astrophysical Stochastic Gravitational Waves. Jonah Kanner PHYS 798G March 27, 2007

Gravitational Wave Burst Searches

Gravitational Wave Detection from the Ground Up

Figure 1: An example of the stretching and contracting of space-time caused by a gravitational wave.

Searching for Gravitational Waves from Coalescing Binary Systems

Curriculum Vitae Chunglee Kim. 522 Space Sciences Building Tel: Cornell University Fax:

Newtonian instantaneous action at a distance General Relativity information carried by gravitational radiation at the speed of light

What can LIGO detect? Abstract

Shajid Haque. University of Windsor Department of Physics Windsor, Canada Education

Searching for gravitational waves

arxiv:gr-qc/ v1 24 Sep 2006

Status of LIGO. David Shoemaker LISA Symposium 13 July 2004 LIGO-G M

Gravitational Wave Astronomy the sound of spacetime. Marc Favata Kavli Institute for Theoretical Physics

arxiv:gr-qc/ v1 4 Dec 2003

Laser Interferometer Gravitational-Wave Observatory (LIGO)! A Brief Overview!

The LIGO Experiment Present and Future

The direct detection of gravitational waves: The first discovery, and what the future might bring

State of LIGO. Barry Barish. S1 sensitivities. LSC Meeting LLO Hanford, WA 10-Nov GEO -- L 2km -- H 4km -- L 4km LIGO-G M

Derrick Kiley, Ph.D.

Overview Ground-based Interferometers. Barry Barish Caltech Amaldi-6 20-June-05

PHYSICS (PHYS) Physics (PHYS) 1. PHYS 5880 Astrophysics Laboratory

Department of Physics

Gravity. Newtonian gravity: F = G M1 M2/r 2

Gravity s Standard Sirens. B.S. Sathyaprakash School of Physics and Astronomy

Searching for Intermediate Mass Black Holes mergers

GRAVITATIONAL WAVES. Eanna E. Flanagan Cornell University. Presentation to CAA, 30 April 2003 [Some slides provided by Kip Thorne]

Search for inspiralling neutron stars in LIGO S1 data

Gravitational-Wave Data Analysis

arxiv: v1 [gr-qc] 25 Jul 2008

Adam Tarte Holley. Postdoctoral Fellow Graduate Student Research Assistant Teaching Assistant

GRAVITATIONAL WAVE ASTRONOMY

Gravitational Wave Searches status and plans

Searching for gravitational waves from neutron stars

Past and Future in the Quest for Gravitational Wave Transients

The search for continuous gravitational waves: analyses from LIGO s second science run

EINSTEIN TELESCOPE rd. 3 generation GW detector

Confronting Theory with Gravitational Wave Observations

Gravitational-Wave Astronomy - a Long Time Coming Livia Conti, for the Virgo Collaboration Fred Raab, for the LIGO Scientific Collaboration

Searches for Gravitational waves associated with Gamma-ray bursts

Gravity -- Studying the Fabric of the Universe

Exploring the Warped Side of the Universe

M.Alessandra Papa. Max Planck Inst. f. Gravitationsphysik and Univ. of Wisconsin- Milwaukee. ICGC Conference 2007, December Pune

How do we really look for gravitational waves?

Probing the Universe for Gravitational Waves

The LIGO Project: a Status Report

GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral

Prospects of continuous gravitational waves searches from Fermi-LAT sources

GRAVITATIONAL WAVE SOURCES AND RATES FOR LISA

An Introduction to Gravitational Waves

Results from LIGO Searches for Binary Inspiral Gravitational Waves

in2p , version 1-14 May 2012

LIGO Detection of Gravitational Waves. Dr. Stephen Ng

Thermal Noise in Non-Equilibrium Steady State Hannah Marie Fair Department of Physics, University of Tokyo, Tokyo, Japan (August 2014)

Overview of Gravitational Wave Physics [PHYS879]

GABRIELA JARAMILLO EMPLOYMENT & EDUCATION. Assistant Professor, University of Houston, TX

LISA: Probing the Universe with Gravitational Waves. Tom Prince Caltech/JPL. Laser Interferometer Space Antenna LISA

Interactions between gravitational waves and photon astronomy (periodic signals)

Parameter estimation for signals from compact binary inspirals injected into LIGO data

Frequency dependent squeezing for quantum noise reduction in second generation Gravitational Wave detectors. Eleonora Capocasa

GRAVITATIONAL WAVES MOHAMMAD ISHTIAQ

Gravitational Waves & Intermediate Mass Black Holes. Lee Samuel Finn Center for Gravitational Wave Physics

DEPARTMENT OF ASTRONOMY

Gravitational Wave Astronomy using 0.1Hz space laser interferometer. Takashi Nakamura GWDAW-8 Milwaukee 2003/12/17 1

Gravitational-Wave Data Analysis: Lecture 3

The Laser Interferometer Gravitational-Wave Observatory In Operation

Michael W. Ray Curriculum Vitae

B F Schutz AEI, Potsdam, Germany and Cardiff University, Wales, UK. The GWIC Roadmap

ASTRONOMY (ASTRON) ASTRON 113 HANDS ON THE UNIVERSE 1 credit.

Long-term strategy on gravitational wave detection from European groups

Prospects for joint transient searches with LOFAR and the LSC/Virgo gravitational wave interferometers

LIGO: The Laser Interferometer Gravitational Wave Observatory

Gravitational waves. What are gravitational waves (GWs)? N. K. Johnson-McDaniel. Wintersemester 2013

HSIN-YU CHEN. ERC 454, 5640 South Ellis Ave. Chicago, IL (515)

LIGO Present and Future. Barry Barish Directory of the LIGO Laboratory

The Advanced LIGO detectors at the beginning of the new gravitational wave era

Gravity Waves and Black Holes

Featured Alumna Sarah Caudill ( 06)

Overview of Gravitational Wave Observations by LIGO and Virgo

Experience Research Associate Penn State University

Searching for gravitational waves from binary inspirals with LIGO

Gravitational Waves Listening to the Universe. Teviet Creighton LIGO Laboratory California Institute of Technology

Curriculum Vitae. Alessandra Buonanno. [Last update: March 1, 2014] Personal Information

James Dilts. Department of Mathematics University of California, San Diego ccom.ucsd.edu/~jdilts

GRB-triggered searches for gravitational waves from compact binary inspirals in LIGO and Virgo data during S5/VSR1

Looking for ripples of gravity with LIGO. Phil Willems, California Institute of Technology. LIGO Laboratory 1 G G

Transcription:

Tiffany Summerscales Ph.D. Department of Physics Andrews University Haughey Hall, 223 Berrien Springs, MI 49104 (269) 471-3523 tzs@andrews.edu EDUCATION: Penn State University, University Park, PA 1999-2006 - Graduated with a Ph.D. in Physics May 2006 - Dissertation: Gravitational Wave Astronomy with LIGO: From Data to Science Andrews University, Berrien Springs, MI 1995-1999 - B. S. in Mathematics and Physics June 1999 EXPERIENCE: Assistant Professor of Physics, Andrews University 2006-present Graduate Research Assistant, Penn State University 2000-2006 Graduate Teaching Assistant, Penn State University 1999-2006 AWARDS: College of Arts & Sciences Excellence Award May 2010 HONOR & PROFESSIONAL SOCIETY MEMBERSHIPS: Sigma Xi The Scientific Research Society 2010-present Pi Mu Epsilon Mathematics Honor Society 2007-present American Physical Society 2001-present Sigma Pi Sigma Physics Honor Society 1998-present PROFESSIONAL ACTIVITIES: TEACHING: PHYS 280 Topics in Physics:MATLAB Spring 2009, 2008 PHYS 280 Topics in Physics Lab Fall 2009 PHYS 295 Independent Study Fall 2008 PHYS 377 Advanced Lab I Spring 2009, 2008, 2007 PHYS 477 Advanced Lab II Spring 2010 PHYS 141 General Physics Fall 2009, 2007 PHYS 142 General Physics Spring 2007 HONS 497H Senior Honors Research Spring 2008, 2007 PHYS 430 Thermodynamics & Statistical Mechanics Summer 2010, Spring 2009, Fall 2006 PHYS 495 Independent Study Spring 2009, Fall 2009, 2006 PHYS 141, 142 Summer General Physics May-July 2008, 2007, 2006 MSCI 665 Prep for Comprehensive Exams Summer 2009 MSCI 670 Comprehensive Exams Summer 2009 IDSC 575 Math & Science Seminar Spring 2008 IDSC 698 Project Spring 2008

PHYS 690 Independent Study Spring 2008 AP Physics II Spring 2010 SERVICE: Chair of the Architecture Program Review Panel 2010-present Chair of the Undergraduate Program Review Committee 2009-present Member of the Advancement Criteria Committee 2009-present Faculty Representative to the Goldwater Foundation 2008-present Member of Educational and Public Outreach Working group of the LSC 2008-present Member of General Education Sub-Committee: Composition, Communication & Computers 2007-2008 Member of General Education Sub-Committee: Arts & Humanities 2007-2008 Member of Honors Council 2007-present Member of Undergraduate Council 2007-present Vice-Chair of Undergraduate Council 2008-present Member of Accreditation Self-Study Sub Committee: Acquisition, Discovery & Application of Knowledge 2007-2008 Science enrichment activities for 7 th -8 th grade Topics in Science at RMES 2006-present Member of the Editorial Board of The Gravitational Lens Newsletter 2006-2007 Internal Talks Andrews University Center for Teaching & Learning Excellence Wed Workshop Nov 2008 - Assessment of Classroom Learning: Four Diverse Approaches (Panel Discussion) Andrews University Eigen*Talk Nov 2006 - Cosmic Ripples: LIGO s Search for Gravitational Waves Andrews University Departmental Assembly Mar 2006 - How to Catch a Gravitational Wave: Doing Astronomy with Wrinkles in Spacetime RESEARCH/SCHOLARSHIP: Mentored Student Research Projects - Worked with Eric Schull to apply a gravitational waveform recovery Spring 2009 algorithm to LIGO data associated with gamma ray burst events. - Worked with Jason Lee on his senior honors project. The project Spring 2008 involved applying a gravitational waveform recovery method to LIGO data from times associated with soft gamma repeater events in hopes of finding gravitational waves associated with the events. Jason presented his findings at the April APS meeting. - Advised masters student Philip Roberts who spent six months at one Spring, Summer 2008 of the LIGO sites learning how to run the LIGO detectors and assisting with commissioning efforts. - Worked with student Nicholas Valles to develop a website for the Fall 2007 automated collection and display of data quality information. Nick presented his work at the March 2008 LIGO Scientific Collaboration Meeting - Worked with Philip Roberts on his senior honors project. The project Spring 2006 involved developing and implementing a new method to recover gravitational wave signals from a network of interferometric detectors - Worked with students Nicholas Valles and Jonathon Van Ornam to build Fall 2006 a list of LIGO data quality issues based on observations recorded in the electronic detector logs. A website was created to post the list and data quality flags covering a few months for each observatory site were recorded. The website is located at http://www.andrews.edu/~tzs/detchar/

Invited Talks Hope College Physics Colloquium - Cosmic Ripples: LIGO s Search for Gravitational Waves Apr 2007 MIT LIGO Seminar - Extracting Supernova Physics from a LIGO Detection Apr 2006 Pacific Union College - LIGO: Viewing the Universe with Wrinkles in Spacetime Feb 2006 Center for Gravitational wave Physics Sources and Simulations Seminar - LIGO Supernova Astronomy with Maximum Entropy Jan 2006 Contributed Talks LIGO Scientific Collaboration (LSC) Meetings - Data Quality Flagging S5 Elog Entries Mar 2007 - LSC Proposal: Andrews University Gravitational Wave Group Aug 2006 Grants Awarded National Science Foundation Award No. PHY-0969810, RUI: Gravitational Waveform recovery from a network of detectors Apr 2010 Peer Reviewed Journal Articles J. Abadie, et. al. Predictions for the Rates of Compact Binary Coalescences Observable by Ground-based Gravitational-wave Detectors, Class. Quantum Grav. 27 (2010) 173001, arxiv/1003.2480 J. Abadie, et. al. All-sky search for gravitational-wave bursts in the first joint LIGO-GEO-Virgo run, Phys. Rev. D 81 (2010) 102001, arxiv/1002.1036 J. Abadie, et. al. Search for gravitational-wave inspiral signals associated with short Gamma-Ray Bursts during LIGO s fifth and Virgo s first science run, Ap. J. 715 (2010) 1453, arxiv/1001.0165 B. Abbott, et. al. Searches for gravitational waves from known pulsars with S5 LIGO data, Ap. J. 713 (2010) 671, arxiv/0909.3583 B. Abbott, et. al. Search for gravitational-wave bursts associated with gamma-ray bursts using data from LIGO Science Run 5 and Virgo Science Run 1, Ap. J. 715 (2010) 1438, arxiv/0908.3824 B. Abbott, et. al. An upper limit on the stochastic gravitational-wave background of cosmological origin, Nature 460 (2009) 990, arxiv/0910.5772 B. Abbott, et. al. Observation of a kilogram-scale oscillator near its quantum ground state, New J. Phys 11 (2009) 073032 B. Abbott, et. al. Search for gravitational waves from low mass compact binary coalescence in 186 days of LIGO s fifth science run, Phys. Rev. D 80 (2009) 047101, arxiv/0905.3710 B. Abbott, et. al. Einstein@Home search for periodic gravitational waves in early S5 LIGO data, Phys. Rev. D 80 (2009) 042003, arxiv/0905.1705 B. Abbott, et. al. Search for gravitational wave ringdowns from perturbed black holes in LIGO S4 data, Phys. Rev. D 80 (2009) 062001, arxiv/0905.1654 B. Abbott, et. al. Search for gravitational-wave bursts in the first year of the fifth LIGO science run, Phys. Rev. D 80 (2009) 102001, arxiv/0905.0020 B. Abbott, et. al. Stacked Search for gravitational waves from the 2006 SGR 1900+14 Storm, Astrophys. J. Lett. 701

(2009) L68-L74, arxiv/0905.0005 B. Abbott, et. al. Search for high frequency gravitational wave bursts in the first calendar year of LIGO s fifth science run, Phys. Rev. D 80 (2009) 102002, arxiv/0904.4910 B. Abbott, et. al. First LIGO search for gravitational wave bursts from cosmic (super)strings, Phys. Rev. D 80 (2009) 062002, arxiv/0904.4718 B. Abbott, et. al. Search for gravitational waves from low mass binary coalescences in the first year of LIGO s S5 data, Phys. Rev. D 79 (2009) 122001, arxiv/0901.0302 B. Abbott, et. al. All-sky LIGO Search for periodic gravitational waves in the early S5 data, Phys. Rev. Lett. 102 (2009) 111102, arxiv/0810.0283 B. Abbott, et. al. LIGO: The Laser Interferometer Gravitational-Wave Observatory, Rep. Prog. Phys. 72 (2009) 076901, arxiv/0711.3041 B. Abbott, et. al. The Einstein@Home search for periodic gravitational waves in LIGO S4 data, Phys. Rev. D 79 (2009) 022001, arxiv/0804.1747 B. Abbott, et. al. Search for Gravitational-Wave Bursts from Soft Gamma Repeaters, Phys. Rev. Lett. 101 (2008) 211102, arxiv/0808.2050 M. Cavaglià, M. Hendry, D. Ingram, S. Milde, D. Reitze, K. Riles, B. Schutz, A. Stuver, T. Summerscales, J. Thacker, C. Torres, D. Ugolini, M. Vallisneri, A. Zermeno, Gravitational-wave Astronomy: Opening a New Window on the Universe for Students, Educators and the Public, Astronomical Society of the Pacific Conference Series, 400 (2008) 328, arxiv/0806.3764 B. Abbott, et. al., First joint search for gravitational-wave bursts in LIGO and GEO 600 data, Class. Quantum Grav. 25 (2008) 245008, arxiv/0807.2834 K. Hayama, S. Desai, K. Kotake, S. Mohanty, M. Rakhmanov, T. Summerscales, S. Yoshida, Determination of the angular momentum distribution of supernovae from gravitational wave observations, Class. Quantum Grav. 25 (2008) 184022, arxiv/0807.4514 K. Hayama, S. Desai, S. Mohanty, M. Rakhmanov, T. Summerscales, S. Yoshida, Source Triacking for Sco X-1, Class. Quantum. Grav. 25 (2008) 184021, arxiv/ 0807.4171 K. Hayama, S. Desai, S. Mohanty, M. Rakhmanov, T. Summerscales, S. Yoshida, Searches for gravitational waves associated with pulsar glitches using a coherent network algorithm, Class. Quantum Grav. 25 (2008) 184016, arxiv/0807.3983 S. Desai, K. Hayama, S. Mohanty, M. Rakhmanov, T. Summerscales, S. Yoshida, Proposed method for searches of gravitational waves from PKS 2155-304 and other blazar flares, Class. Quantum Grav, 25 (2008) 184024, arxiv/0804.3393 B. Abbott, et. al. Astrophysically triggered searches for gravitational waves: status and prospects, Class. Quantum Grav. 25 (2008) 114051, arxiv/0802.4320 K. Hayama, S. Mohanty, M. Rakhmanov, S. Desai, and T. Summerscales, Monitoring Sco X-1 for the detection of gravitational waves with networks of gravitational wave detectors, J. Phys.: Conf. Ser. 120 (2008) 032009 B. Abbott, et. al. Beating the spin-down limit on gravitational wave emission from the Crab pulsar, ApJ Lett., 683 (2208) L45, arxiv/0805.4758 B. Abbott, et. al., Implications for the Origin of GRB 070201 from LIGO Observations, Ap.J., 681 (2008) 1419, arxiv/0711.1163 T. Summerscales, A. Burrows, L.S. Finn, C. Ott, Maximum Entropy for Gravitational Wave Data Analysis: Inferring the Physical Parameters of Core-Collapse Supernovae, Ap.J., 678 (2008) 1142, arxiv/0704.2157 B. Abbott, et. al. Search for gravitational waves from binary inspirals in S3 and S4 LIGO data, Phys. Rev. D, 77

(2008) 062002, arxiv/0704.3368 B. Abbott, et. al, Search for gravitational waves associated with 39 gamma-ray bursts using data from the second, third and fourth LIGO runs, Phys. Rev. D, 77 (2008) 062004, arxiv/0709.0766 B. Abbott, et. al. Search of S3 LIGO data for gravitational wave signals from spinning black hole and neutron star binary inspirals, Phys. Rev. D, 78 (2008) 042002, arxiv/0712.2050 L. Baggio, et. al. A joint search for gravitational wave bursts with AURIGA and LIGO, Class. Quantum Grav., 25 (2008) 095004, arxiv/0710.0497 B. Abbott, et. al. All-sky search for periodic gravitational waves in LIGO S4 data, Phys. Rev. D, 77 (2008), 022001, arxiv/0708.3818 B. Abbott, et. al. Search for gravitational-wave bursts in LIGO data from the fourth science run, Class. Quantum Grav., 24 (2007) 5343-5369, arxiv/0704.0943 B. Abbott, et. al. Searches for periodic gravitational waves from unknown isolated sources and Scorpius X-1: Results from the second LIGO science run, Phys. Rev. D, 76 (2007), 082001, gr-qc/0605208 B. Abbott, et. al. Upper limit map of a background of gravitational waves, Phys. Rev. D, 76 (2007), 082003, astroph/0703234 B. Abbott, et. al. Search for gravitational wave radiation associated with the pulsating tail of the SGR 1806-20 hyperflare of 27 December 2004 using LIGO, Phys. Rev. D, 76 (2007), 062003, astro-ph/0703419 B. Abbott, et. al. Upper limits on gravitational wave emission from 78 radio pulsars, Phys. Rev. D, 76 (2007), 042001, gr-qc/0702039 B. Abbott, et. al. First cross-correlation analysis of interferometric and resonant-bar gravitational-wave data for stochastic backgrounds, Phys. Rev. D, 76 (2007), 022001, gr-qc/0703068 B. Abbott, et. al. Searching for a Stochastic Background of Gravitational Waves with LIGO, ApJ. 659 (2007), 918, astro-ph/0608606 B. Abbott, et. al. Joint LIGO and TAMA300 Search for Gravitational Waves from Inspiralling Neutron Star Binaries, Phys. Rev. D, 73 (2006), 102002, gr-qc/0512078 B. Abbott, et. al. Search for gravitational wave bursts in LIGO's third science run, Class. Quantum Grav., 23 (2006), S29-S39, gr-qc/0511146 B. Abbott, et al. Search for gravitational waves from binary black hole inspirals in LIGO data, Phys. Rev. D, 73 (2006), 062001, gr-qc/0509129 B. Abbott, et. al. Upper Limits on a Stochastic Background of Gravitational Waves, Phys. Rev. Lett., 95 (2005), 221101, astro-ph/0507254 B. Abbott, et al. First all-sky upper limits from LIGO on the strength of periodic gravitational waves using the Hough transform, Phys. Rev. D, 72 (2005), 102004, gr-qc/0508065 B. Abbott, et al. Upper limits from the LIGO and TAMA detectors on the rate of gravitational-wave bursts, Phys. Rev. D, 72 (2005), 122004, gr-qc/0507081 B. Abbott, et al. Search for Gravitational Waves from Primordial Black Hole Binary Coalescences in the Galactic Halo, Phys. Rev. D, 72 (2005), 082002, gr-qc/0505042 B. Abbott, et al. Search for gravitational waves from galactic and extragalactic binary neutron stars, Phys. Rev. D, 72 (2005), 082001, gr-qc/0505041 B. Abbott, et al. Upper limits on gravitational wave bursts in LIGO's second science run, Phys. Rev. D, 72 (2005), 062001, gr-qc/0505029

B. Abbott, et al. A Search for Gravitational Waves Associated with the Gamma Ray Burst GRB030329 Using the LIGO Detectors., Phys. Rev. D, 72 (2005), 042002, gr-qc/0501068 B. Abbott, et al. Limits on Gravitational-Wave Emission from Selected Pulsars Using LIGO Data, Phys. Rev. Lett., 94 (2005), 181103, gr-qc/0410007 J. McNabb, M. Ashley, L.S. Finn, E. Rotthoff, A.L. Stuver, T.Z. Summerscales, P. Sutton, M.M. Tibbits, K.A. Thorne, and K. Zaleski, Overview of the BlockNormal Event Trigger Generator, Class. Quantum Grav. 21 (2004), S1705S1710, gr-qc/0404123 B. Abbott, et al. Analysis of the first LIGO science data for stochastic gravitational waves, Phys. Rev. D, 69 (2004), 122004, gr-qc/0312088 B. Abbott, et al. First upper limits from LIGO on gravitational wave bursts, Phys.Rev. D, 69 (2004), 102001, grqc/0312056 B. Abbott, et al. Analysis of LIGO data for gravitational waves from binary neutron stars, Phys. Rev. D, 69 (2004), 122001, gr-qc/0308069 B. Abbott, et al. Setting upper limits on the strength of periodic gravitational waves from PSR J1939+2134 using the first science data from the GEO 600 and LIGO detectors, Phys. Rev. D, 69 (2004), 082004, gr-qc/ 0308050 B. Allen, G. Woan, et al. Upper limits on the strength of periodic gravitational waves from PSR J1939+2134, Class. Quantum Grav. 21 (2004), S1705S1710, gr-qc/0311023 B. Abbott, et al. Detector description and performance for the first coincidence observations between LIGO and GEO, Nucl. Instrum. Methods A, 517 (2004), 154179, gr-qc/0308043