Jing-Zhao Qi
Physics and Astronomy · Purdue University West Lafayette
Publications
91
Citations
2,514
Est. group size
~6
Recurring co-author estimate
Active years
17
Publishing since 2010
Jing-Zhao Qi works in observational cosmology, focusing on using diverse astrophysical measurements—such as gravitational waves, strong gravitational lensing time delays, supernovae, gamma-ray bursts, and fast radio bursts—as 'standard sirens' or distance probes to test fundamental assumptions about the universe. Much of this work centers on measuring the Hubble constant (the universe's expansion rate), testing cosmic geometry and curvature, probing dark energy, and checking whether general relativity holds at galactic and cosmological scales. This research is largely data-analysis and statistics driven, combining multiple independent cosmological datasets to produce model-independent constraints.
Publication output has grown from roughly 5 papers per year in 2017 to a peak of around 13–14 in 2022 and 2024, indicating an overall increasing and active publication trend over the past decade with year-to-year fluctuation.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Gravitational wave standard sirens from GWTC-3 combined with DESI DR2 and DESY5: A late-universe probe of the Hubble constant and dark energy
Science China Physics Mechanics and Astronomy · 2026
- HIcosmo: a differentiable JAX-based framework for cosmology inference
arXiv (Cornell University) · 2026
- Testing the Cosmic Distance Duality Relation Using Strong Gravitational Lensing Time Delays and Type Ia Supernovae
The Astrophysical Journal · 2025
- Model-independent <i>H</i> <sub>0</sub> within FLRW: Joint Constraints from GWTC-3 Standard Sirens and Strong Lensing Time Delays
The Astrophysical Journal Letters · 2025
- Testing the cosmic distance duality relation with baryon acoustic oscillations and supernovae data
The European Physical Journal C · 2025
- Combining strongly lensed and unlensed fast radio bursts: To be a more precise late-universe probe
Science China Physics Mechanics and Astronomy · 2025
- Performance optimisation of a normalised operational assessment system using hybrid population intelligence algorithm
International Journal of Information and Communication Technology · 2025
- A 2:1 Bandwidth 3-6 GHz Dual-Polarized True-Time-Delay Based Reconfigurable Intelligent Surface (RIS)
2025
- Joint Observations of Late Universe Probes: Cosmological Parameter Constraints from Gravitational Wave and Type Ia Supernova Data
The Astrophysical Journal · 2024
- Exploring Simple-Population and Multiple-Population Globular Clusters in the Outer Galactic Halo using the Hubble Space Telescope
arXiv (Cornell University) · 2024
- Joint observations of late universe probes: cosmological parameter constraints from gravitational wave and Type Ia supernova data
arXiv (Cornell University) · 2024
- Testing the Cosmic Distance Duality Relation Using Strong Gravitational Lensing Time Delays and Type Ia Supernovae
arXiv (Cornell University) · 2024
- Model-independent measurement of cosmic curvature with the latest <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"><mml:mi>H</mml:mi><mml:mo stretchy="false">(</mml:mo><mml:mi>z</mml:mi><mml:mo stretchy="false">)</mml:mo></mml:math> and SNe Ia data: A comprehensive investigation
Physical review. D/Physical review. D. · 2023
- Prospects for constraining interacting dark energy models from gravitational wave and gamma ray burst joint observation
Journal of Cosmology and Astroparticle Physics · 2023
- Null test for cosmic curvature using Gaussian process*
Chinese Physics C · 2023
- arXiv (Cornell University)×18
- The European Physical Journal C×10
- The Astrophysical Journal×9
- Physical review. D/Physical review. D.×7
- Physical Review Letters×4
- Seokcheon Lee
Physics and Astronomy · Purdue University West Lafayette
- John T. Giblin
Physics and Astronomy · The Ohio State University
- J. Elvin-Poole
Physics and Astronomy · The Ohio State University
- M. Rashkovetskyi
Physics and Astronomy · The Ohio State University
- N. MacCrann
Physics and Astronomy · The Ohio State University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 20, 2026.
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