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1 | 1 | ## Citation Summary |
2 | 2 |
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3 | | -- **Total ADS citations**: 9713 |
| 3 | +- **Total ADS citations**: 9710 |
4 | 4 | - **Total INSPIRE citations**: 10577 |
5 | 5 | - **Total MAX citations**: 10659 |
6 | 6 | - **h-index**: 47 |
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17 | 17 | | **6** | Barausse | 2020 | Prospects for fundamental physics with LISA | 389 | 439 | 439 | |
18 | 18 | | **7** | Gerosa | 2017 | Are merging black holes born from stellar collapse or previous mergers? | 331 | 355 | 355 | |
19 | 19 | | **8** | Arun | 2022 | New horizons for fundamental physics with LISA | 301 | 354 | 354 | |
20 | | -| **9** | Gerosa | 2021 | Hierarchical mergers of stellar-mass black holes and their gravitational-wave signatures | 265 | 280 | 280 | |
| 20 | +| **9** | Gerosa | 2021 | Hierarchical mergers of stellar-mass black holes and their gravitational-wave signatures | 264 | 280 | 280 | |
21 | 21 | | **10** | Gerosa | 2018 | Spin orientations of merging black holes formed from the evolution of stellar binaries | 214 | 235 | 235 | |
22 | 22 | | **11** | Afshordi | 2025 | Waveform modelling for the Laser Interferometer Space Antenna | 144 | 174 | 174 | |
23 | 23 | | **12** | Gerosa | 2015 | Multi-timescale analysis of phase transitions in precessing black-hole binaries | 139 | 162 | 162 | |
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27 | 27 | | **16** | Vitale | 2020 | Inferring the properties of a population of compact binaries in presence of selection effects | 129 | 138 | 138 | |
28 | 28 | | **17** | Kesden | 2015 | Effective potentials and morphological transitions for binary black-hole spin precession | 115 | 137 | 137 | |
29 | 29 | | **18** | Ng | 2018 | Gravitational-wave astrophysics with effective-spin measurements: asymmetries and selection biases | 115 | 126 | 126 | |
30 | | -| **19** | Baibhav | 2019 | Gravitational-wave detection rates for compact binaries formed in isolation: LIGO/Virgo O3 and beyond | 109 | 125 | 125 | |
| 30 | +| **19** | Baibhav | 2019 | Gravitational-wave detection rates for compact binaries formed in isolation: LIGO/Virgo O3 and beyond | 108 | 125 | 125 | |
31 | 31 | | **20** | Gerosa | 2019 | Multiband gravitational-wave event rates and stellar physics | 109 | 120 | 120 | |
32 | 32 | | **21** | Gerosa | 2019 | Escape speed of stellar clusters from multiple-generation black-hole mergers in the upper mass gap | 110 | 119 | 119 | |
33 | 33 | | **22** | Moore | 2019 | Are stellar-mass black-hole binaries too quiet for LISA? | 89 | 101 | 101 | |
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45 | 45 | | **34** | Klein | 2022 | The last three years: multiband gravitational-wave observations of stellar-mass binary black holes | 61 | 68 | 68 | |
46 | 46 | | **35** | Gerosa | 2016 | Black-hole kicks as new gravitational-wave observables | 62 | 66 | 66 | |
47 | 47 | | **36** | Buscicchio | 2021 | Bayesian parameter estimation of stellar-mass black-hole binaries with LISA | 55 | 64 | 64 | |
48 | | -| **37** | Gupta | 2020 | Black holes in the low mass gap: Implications for gravitational wave observations | 60 | 64 | 64 | |
| 48 | +| **37** | Gupta | 2020 | Black holes in the low mass gap: Implications for gravitational wave observations | 59 | 64 | 64 | |
49 | 49 | | **38** | Gerosa | 2018 | Black-hole kicks from numerical-relativity surrogate models | 56 | 62 | 62 | |
50 | 50 | | **39** | Gerosa | 2015 | Precessional instability in binary black holes with aligned spins | 56 | 61 | 61 | |
51 | 51 | | **40** | Gerosa | 2020 | Astrophysical implications of GW190412 as a remnant of a previous black-hole merger | 54 | 60 | 60 | |
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205 | 205 | <br><br> |
206 | | -*Last updated: 2026-02-03 07:33:09 UTC* |
| 206 | +*Last updated: 2026-02-04 01:01:16 UTC* |
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