Standout Papers
- Gravitational waves from merging compact binaries: How accurately can one extract the binary’s parameters from the inspiral waveform? (1994)
- Constraining neutron-star tidal Love numbers with gravitational-wave detectors (2008)
- The last three minutes: Issues in gravitational-wave measurements of coalescing compact binaries (1993)
Immediate Impact
7 by Nobel laureates 22 from Science/Nature 263 standout
Citing Papers
Using gravitational waves to see the first second of the Universe
2025 Standout
Black Hole Spectroscopy in Environments: Detectability Prospects
2025 Standout
Works of Éanna É. Flanagan being referenced
Measuring gravitational waves from binary black hole coalescences. II. The waves’ information and its extraction, with and without templates
1998
Measuring gravitational waves from binary black hole coalescences. I. Signal to noise for inspiral, merger, and ringdown
1998
Author Peers
| Author | Last Decade | Papers | Cites | ||||
|---|---|---|---|---|---|---|---|
| Éanna É. Flanagan | 6646 | 3036 | 674 | 856 | 91 | 7.1k | |
| P. A. Sturrock | 4140 | 1115 | 257 | 241 | 170 | 5.4k | |
| John L. Friedman | 4707 | 1733 | 643 | 867 | 107 | 5.1k | |
| A. K. Harding | 4404 | 2462 | 40 | 335 | 208 | 5.4k | |
| J. M. Cordes | 7012 | 2450 | 123 | 946 | 190 | 7.2k | |
| Peter G. Bergmann | 2034 | 1568 | 1405 | 165 | 145 | 4.5k | |
| J. H. Taylor | 7695 | 2104 | 250 | 1813 | 131 | 8.3k | |
| Robert V. Wagoner | 4892 | 3260 | 608 | 364 | 91 | 5.7k | |
| A. E. E. Rogers | 3438 | 1566 | 122 | 1240 | 166 | 4.4k | |
| D. B. Melrose | 5280 | 2525 | 116 | 200 | 287 | 6.2k | |
| D. R. Lorimer | 9024 | 2564 | 154 | 1577 | 196 | 9.3k |
All Works
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