1 Work of the LSC Pulsar Upper Limits Group (PULG) Graham Woan, University of Glasgow on behalf of the LIGO Scientific Collaboration GWDAW 2003.

Slides:



Advertisements
Similar presentations
LIGO-G Z Beating the spin-down limit on gravitational wave emission from the Crab pulsar Michael Landry LIGO Hanford Observatory for the LIGO.
Advertisements

Upper-limit on Sco X-1 S2 preliminary results C Messenger, V Re and A Vecchio on behalf of PULG LSC General Meeting LHO, 10 th – 13 th November 2003.
Pulsar Detection and Parameter Estimation with MCMC - Six Parameters Nelson Christensen Physics and Astronomy Carleton College GWDAW December 2003.
Searches for continuous gravitational waves with LIGO and GEO600 M. Landry for the LIGO Scientific Collaboration LIGO Hanford Observatory, Richland WA.
The search for continuous gravitational waves: analyses from LIGO’s second science run Michael Landry LIGO Hanford Observatory on behalf of the LIGO.
1 Status of Unbiased Search for Continuous-Wave Sources Dave Chin, Vladimir Dergachev, Keith Riles (University of Michigan) LIGO Scientific Collaboration.
Moving towards a hierarchical search. We now expand the coherent search to inspect a larger parameter space. (At the same time the incoherent stage is.
LIGO-G W Gregory Mendell and Mike Landry LIGO Hanford Observatory The StackSlide Search Summary: November 2003.
LIGO-G W Gregory Mendell, LIGO Hanford Observatory on behalf of the LIGO Scientific Collaboration StackSlide Summary LSC Meeting, August 2005.
Searching for pulsars using the Hough transform Badri Krishnan AEI, Golm (for the pulsar group) LSC meeting, Hanford November 2003 LIGO-G Z.
1 Known Isolated Pulsars Preliminary S2 Results Réjean Dupuis, Matt Pitkin, Graham Woan LIGO-G Z.
LIGO Meeting LIGO Scientific Collaboration - University of Wisconsin - Milwaukee LIGO-G Z SuperComputing 2003 grid-distributed wide-area.
LIGO-G W Gregory Mendell, LIGO Hanford Observatory on behalf of the LIGO Scientific Collaboration Stackslide search for continuous gravitational.
CW signals: plans for S2 June the group held a f2f meeting to discuss plans for analyses of S2 data (and beyond). Slides from the various presentations.
The Demodulation Code The Demodulation Code For the 1 st and 3 rd stage of hierarchical searches and for targeted searches of known objects. LIGO-G Z.
GWDAW /12/161 Activities of the LIGO Scientific Collaboration’s Continuous Wave Group Xavier Siemens for the LSC University of Wisconsin -- Milwaukee.
Alicia M. Sintes Universitat de les Illes Balears Paris,17 November 2006 Current searches for continuous gravitational waves.
The Continuous Waves UL Group: status report. LSC Meeting LIGO Hanford Observatory August 2002 M.Alessandra Papa LIGO-G Z.
Searching for gravitational radiation from Scorpius X-1: Limits from the second LIGO science run Alberto Vecchio on behalf of the LIGO Scientific Collaboration.
Optimized Search Strategies for Continuous Gravitational Waves Iraj Gholami Curt Cutler, Badri Krishnan Max-Planck-Institut für Gravitationsphysik (Albert-Einstein-Institut)
LIGO-G Z GWDAW10, December 16, S3 Final Results Bruce Allen, for the LIGO Scientific Collaboration.
GWDAW - Annecy December 17 th 2004 LIGO-G Z1 Searching for gravitational waves from known pulsars Matthew Pitkin for the LIGO Scientific Collaboration.
GWDAW-8 December 18, 2003LIGO Scientific Collaboration, UW - Milwaukee 1LIGO-G Z Broad-band CW searches (for isolated pulsars) in LIGO and GEO.
Yousuke Itoh GWDAW8 UW Milwaukee USA December 2003 A large value of the detection statistic indicates a candidate signal at the frequency and.
LIGO-G Data Analysis Techniques for LIGO Laura Cadonati, M.I.T. Trento, March 1-2, 2007.
LIGO-G Z LSC Nov 5, Bruce Allen, U. Wisconsin - Milwaukee and AEI
LIGO-G W A Caltech/MIT collaboration supported by the United States National Science Foundation Recent Results From The LIGO Search For Periodic.
LIGO-G v2 The Search For Continuous Gravitational Waves Gregory Mendell, LIGO Hanford Observatory on behalf of the LIGO Science Collaboration The.
LIGO-G Z LSC ASIS Meeting LIGO Scientific Collaboration - University of Wisconsin - Milwaukee 1 Update on November 2003 grid-distributed.
LIGO-G Z 1 Setting upper limits on the strength of periodic GWs using the first science data from the LIGO and GEO detectors Bruce Allen, University.
Optimized hierarchical continuous-wave searches Badri Krishnan Curt Cutler, Iraj Gholami AEI, Golm G Z LSC meeting, March 2004 ASIS session.
Alicia M. Sintes On behalf of the LIGO Scientific Collaboration LIGO-G Z Results from the LSC Periodic Sources Working Group Recontres de Moriond.
Searching for continuous gravitational wave signals A.M. Sintes, Universitat de les Illes Balears, Spain Sources of Gravitational Waves Trieste, September.
1 Unbiased All-Sky Search (Michigan) [as of August 17, 2003] [ D. Chin, V. Dergachev, K. Riles ] Analysis Strategy: (Quick review) Measure power in selected.
APS meeting, Dallas 22/04/06 1 A search for gravitational wave signals from known pulsars using early data from the LIGO S5 run Matthew Pitkin on behalf.
15-18 December 2004 GWDAW-9 Annecy 1 All-Sky broad band search for continuous waves using LIGO S2 data Yousuke Itoh 1 for the LIGO Scientific Collaboration.
Periodic Sources Session M. Alessandra Papa - Albert Einstein Institute - Golm, Germany The LSC UL group is using all (and only) of the codes that we (GEO)
GW pulsars in binary systems Sco X-1 C Messenger and A Vecchio LSC General Meeting LIGO Livingston Observatory 17 th – 20 th March, 2003 LIGO-G Z.
LIGO-G Z Peter Shawhan (University of Maryland) for the LIGO Scientific Collaboration Special thanks to Michael Landry and Bruce Allen Eastern.
CW Search Group Status Summary: August 2005 M.Alessandra Papa for the CW group G05yyxx-00-Z.
All-sky LIGO Search for Periodic Gravitational Waves in the Fourth Science Run (S4) Keith Riles University of Michigan For the LIGO Scientific Collaboration.
LIGO Insert Name of the Meeting KAWABE K., 2006/Apr/25 APS Meeting Dallas, W DCC: LIGO-G Z Coherent searches for periodic gravitational.
GEO600 Data Analysis Status
SC03 failed results delayed FDS: parameter space searches
Review production of 30min calibrated SFTs well under way (see talks by V.Dergachev., X. Siemens in ASIS/DetChar). Also expect calibrated h(t) in the next.
Xavier Siemens for the LSC University of Wisconsin -- Milwaukee
Searching for accreting neutron stars
A 2 veto for Continuous Wave Searches
All-Sky broad band search for continuous waves using LIGO S2 data
Overview of the CW Search Group Efforts – S2 data analyses Michael Landry LIGO Hanford Observatory on behalf of the CW Search Group LSC Meeting March.
Bounding the strength of gravitational radiation from Sco-X1
Searching for pulsars using the Hough transform
on behalf of the LIGO Scientific Collaboration
Sco-X1search : S2 results
Analysis of LIGO S2 data for GWs from isolated pulsars
Coherent wide parameter space searches for gravitational waves from neutron stars using LIGO S2 data Xavier Siemens, for the LIGO Scientific Collaboration.
Sco-X1search : S2 results
Bounding the strength of gravitational radiation from Sco-X1
S3 time domain known pulsar search
A.M. Sintes for the pulgroup
Status of the Hough CW search code - Plans for S2 -
TwoSpect Scorpius X-1 mock data challenge, September 2013 Evan Goetz (AEI—Hannover), Grant David Meadors, Keith Riles (University of Michigan) TwoSpect.
TwoSpect Scorpius X-1 mock data challenge, September 2013 Evan Goetz (AEI—Hannover), Grant David Meadors, Keith Riles (University of Michigan) TwoSpect.
Matthew Pitkin on behalf of the LIGO Scientific Collaboration
Broad-band CW searches in LIGO and GEO S2 and S3 data
Broad-band CW searches in LIGO and GEO S2 and S3 data
LIGO Scientific Collaboration, UW - Milwaukee
Hough search for continuous gravitational waves using LIGO S4 data
Broad-band CW searches in LIGO and GEO S2 and S3 data
CW Search Group Efforts – overview Michael Landry LIGO Hanford Observatory on behalf of the CW Search Group LSC Meeting June 6, 2004 Tufts University,
Presentation transcript:

1 Work of the LSC Pulsar Upper Limits Group (PULG) Graham Woan, University of Glasgow on behalf of the LIGO Scientific Collaboration GWDAW 2003

2 Pulsar Upper Limits Group (PULG) Community of LSC members interested in continuous wave sources Co-chairs: Maria Alessandra Papa (AEI, GEO) Mike Landry (LHO Hanford, LIGO) Search code development work has been underway since mid-to-late 1990s For S1: set upper limit on a single known pulsar For S2: set upper limits on generic continuous wave signals, and perform some wide-area and targeted searches

3 Search methods Incoherent searches: »Blind search »Stack–slide search »Hough transform search Frequentist coherent searches: »F-statistic area search »X-ray binary search Bayesian parameter estimation searches: »Time domain targeted search »MCMC search } } } Searches for excess monochromatic power Deep searches over a broad parameter space Finely tuned searches over a narrow parameter space

4 Blind all-sky search D. Chin, V. Dergachev, K. Riles (U. Michigan) Measure power in selected bins (defined by frequency and sky-position) of averaged periodograms Estimate noise level & statistics from neighboring bins Set upper limit on quasi-sinusoidal signal, corrected for antenna pattern and Doppler modulation Refine with results from explicit signal simulation Follow up any unexplained power excess in single IFO with multi-IFO consistency checks

5 Stack-slide search M. Landry, G. Mendell (LHO) An incoherent search method that stacks and slides power to search for periodic sources. Can be used as part of a hierarchical search with coherent & incoherent stages Sources like LXMBs with short coherence times (~ 2 weeks) are well suited to incoherent methods Bins with frequency domain data, e.g., from SFTs or F-statistic A.Stack the power B.Slide to correct for spindown/Doppler shifts C.Sum and search for significant peaks

6 Hough transform search B. Krishnan, MA Papa, A. Sintes (AEI/UIB) Set upper-limit Pre-processing Divide the data set in N chunks raw data Construct set of SFTs (t SFT <1800s) Incoherent search Hough transform (  f 0, f i ) Peak selection in t-f plane Candidates selection Input data: Short Fourier Transforms (SFT) For every SFT, select frequency bins in which normalised power exceeds some threshold  t-f plane of {0,1} Search for patterns in the t-f plane using the Hough Transform t f { , ,f 0,f i } Generate summary statistics Frequentist upper limits: p(n|h 0 ) estimated by Monte Carlo signal injection See poster

7 F-statistic area search B. Allen, B. Krishnan, Y. Itoh, M. Papa, X. Siemens (AEI/UWM) Detection statistic: F = log of the likelihood maximized over (functions of) the unknown parameters Frequency f of source in solar system barycentre (SSB) Rate of change of frequency df/dt in SSB Sky coordinates ( ,  ) of source Strain amplitude h 0 Spin-axis inclination  Phase, polarization ,  phase evolution amplitude modulation

8 X-ray binary search (accreting neutron stars) C. Messenger, V Re, A. Vecchio (U. Birmingham) Search Sco X-1 and other known LMXBs (~20 targets) Method: hierarchical frequency domain analysis »Coherent analysis over short data chunks »Add incoherently (stack-slide) chunks »Upper-limit using frequentist approach Parameter space: »Emission frequency (search bandwidth ~ tens of Hz) »3 orbital parameters »Spin-down/up S2 analysis: upper-limit on Sco X-1 using a one-stage coherent search over short integration time (T obs = 6 hr) » Computationally bound: one month of processing time on 200 CPUs

9 Time domain targeted search R. Dupuis, M. Pitkin, G. Woan (U. Glasgow) Targeting radio pulsars at known locations with rotational phase inferred from radio data Heterodyne stages to beat any time-varying signal down to ~d.c. Upper limits defined in terms of Bayesian posterior probability distributions for modelled pulsar parameters polarisation angle strain amplitude probability (simulation)

10 MCMC search N. Christensen, J. Veitch, G.Woan (Carleton/U Glasgow) Computational Bayesian technique (Markov Chain Monte Carlo) using Metropolis-Hastings routine MCMC can both estimate parameters and generate summary statistics (pdfs, cross-correlations, etc) 6 unknown parameters manageable so far: h 0, , f, df/dt Initial Applications: fuzzy searches in restricted parameter space and SN1987a (location known but other parameters not known)

11 Computational engines used Medusa cluster (UWM) »296 single-CPU nodes (1GHz PIII Mb memory), 58 TB disk space Merlin cluster (AEI) »180 dual-CPU nodes (1.6 GHz Athlons + 1 GB memory), 36 TB disk space Tsunami (Birmingham) »100 dual-CPU nodes (2.4 GHz Xeon + 2 GB memory), 10 TB disk space

12 Talks to come… 10:15-10:30 Rejean J. Dupuis · University of Glasgow · GEO Analysis of LIGO S2 data for gravitational waves from isolated pulsars 10:30-10:45 Nelson Christensen · Carleton College · LIGO Pulsar Detection and Parameter Estimation with MCMC - Six Parameters 11:15-11:30 Bruce Allen · U. Wisconsin - Milwaukee · LIGO Broad-band CW searches in LIGO & GEO S2/S3 data 11:30-11:45 Alberto Vecchio · University of Birmingham · GEO Searching for accreting neutron stars 11:45-12:00 Yousuke Itoh · Albert-Einstein-Institute · LIGO/GEO Chi-square test on candidate events from CW signals coherent searches