姓名:祁景钊
职称:副教授
专业:物理
所属二级学科:理论物理,天体物理
研究方向:宇宙学
E-mail: qijingzhao@mail.neu.edu.cn
个人简历:2016年毕业于北京师范大学,获理论物理博士学位,研究领域为宇宙学,在强引力透镜宇宙学、暗能量宇宙学、修改引力、引力波、21厘米宇宙学等多个研究方向长期开展研究工作,取得了一系列创新性成果,在ApJ、PRD、JCAP、MNRAS、EPJC等国际重要学术期刊发表论文53篇,被引用1400余次,H因子26,尤其在解决宇宙学参数测量不一致性问题、检验宇宙学基础理论,以及开发晚期宇宙精确探针等方面做出了突出贡献,并引起了国内外专家广泛地关注讨论。主持国家自然科学基金项目1项,参与国家自然科学基金项目1项,参与并承担科技部重点研发项目子课题1项。
近年来的主要研究工作:
2. Jing-Zhao Qi; Ping Meng; Jing-Fei Zhang; Xin Zhang ; Model-independent measurement of cosmic curvature with the latest H(z) and SNe Ia data: A comprehensive investigation, Physical Review D, 2023, 108(6)
3. Qi, Jing-Zhao; Jiang, Yi-Fan; Hou, Wan-Ting; Zhang, Xin ; Testing the Cosmic Distance Duality Relation Using Strong Gravitational Lensing Time Delays and Type Ia Supernovae,Astrophysical Journal, 2025, 979(1)
4. Zheng, Jie; Liu, Xiao-Hui; Qi, Jing-Zhao *; Joint Observations of Late Universe Probes:Cosmological Parameter Constraints from Gravitational Wave and Type Ia Supernova Data, ASTROPHYSICAL JOURNAL, 2024, 975(2)
5. Jing-Zhao Qi; Shang-Jie Jin; Xi-Long Fan; Jing-Fei Zhang; Xin Zhang ; Using a multi-messenger and multi-wavelength observational strategy to probe the nature of dark energy through direct measurements of cosmic expansion history, Journal of Cosmology and Astroparticle Physics, 2021, 042(12)
6. Qi Jing-Zhao; Shuo Cao; Sixuan Zhang; Marek Biesiada; Yan Wu; Zong-Hong Zhu ; The distance sum rule from strong lensing systems and quasars – test of cosmic curvature and beyond, Monthly Notices of the Royal Astronomical Society, 2019, 483(1): 1104-1113
7. Qi, Jing-zhao; Cao, Shuo; Biesiada, Marek; Zheng, Xiaogang; Ding, Xuheng; Zhu, Zong Hong ; Strongly gravitationally lensed type Ia supernovae: Direct test of the Friedman-Lemaitre-Robertson-Walker metric, PHYSICAL REVIEW D, 2019, 100(2): 0-023530
8. Qi, Jing-Zhao; Cao, Shuo; Pan, Yu; Li, Jin ; Cosmic opacity: Cosmological-model-independent tests from gravitational waves and Type Ia Supernova, Physics of the Dark Universe, 2019, 26: 0-UNSP 100338
9. Qi, Jing Zhao; Cao, Shuo; Zheng, Chenfa; Pan, Yu; Li, Zejun; Li, Jin; Liu, Tonghua ; Testing the Etherington distance duality relation at higher redshifts: Combined radio quasar and gravitational wave data, PHYSICAL REVIEW D, 2019, 99(6): 0-063507
10. Wang, Bo; Qi, Jing-Zhao*; Zhang, Jing-Fei; Zhang, Xin* ; Cosmological Model-independent Constraints on Spatial Curvature from Strong Gravitational Lensing and SN Ia Observations, Astrophysical Journal, 2020, 898(2): 0-100
11. Qi, Jing-Zhao; Zhao, Jia-Wei; Cao, Shuo; Biesiada, Marek; Liu, Yuting ; Measurements of the Hubble constant and cosmic curvature with quasars: ultracompact radio structure and strong gravitational lensing, Monthly Notices of the Royal Astronomical Society, 2021, 503(2): 2179-2186
12. Jing-Zhao Qi; Wei-Hong Hu; Yu Cui; Jing-Fei Zhang; Xin Zhang ; Cosmological Parameter Estimation Using Current and Future Observations of Strong Gravitational Lensing, Universe, 2022, 8(5): 254
13. Xiao-Hui Liu; Zhen-Hua Li; Jing-Zhao Qi*; Xin Zhang* ; Galaxy-scale Test of General Relativity with Strong Gravitational Lensing, The Astrophysical Journal, 2022, 927(1)
14. Cao, Meng-Di; Zheng, Jie; Qi, Jing-Zhao*; Zhang, Xin; Zhu, Zong-Hong ; A New Way to Explore Cosmological Tensions Using Gravitational Waves and Strong Gravitational Lensing, The Astrophysical Journal, 2022, 934(2): 108-108
15. Wan-Ting Hou; Jing-Zhao Qi*; Tao Han; Jing-Fei Zhang; Shuo Cao; Xin Zhang* ; Prospects for constraining interacting dark energy models from gravitational wave and gamma ray burst joint observation, Journal of Cosmology and Astroparticle Physics, 2023, 2023(05): 17
近年来承担的主要项目(五项):
(1) 国家自然科学基金委员会, 青年科学基金项目(C类)[原青年科学基金项目], 12205039, 利用强引力透镜研究宇宙学中不一致性问题, 2023-01-01 至 2025-12-31, 30万元, 在研, 主持
(2) 国家科技部, 国家重点研发计划, 2022SKA0110200, 中性氢巡天和宇宙学模拟, 2022-11 至 2027-10, 900万元, 在研, 参与,承担经费60万元
近年来发表的代表性论文(十篇):
1. Qi, Jing-Zhao; Cui, Yu; Hu, Wei-Hong; Zhang, Jing-Fei; Cui, Jing-Lei; Zhang, Xin ; Strongly lensed type Ia supernovae as a precise late-Universe probe of measuring the Hubble constant and cosmic curvature, Physical review, 2022, 106(2)
2. Jing-Zhao Qi; Ping Meng; Jing-Fei Zhang; Xin Zhang ; Model-independent measurement of cosmic curvature with the latest H(z) and SNe Ia data: A comprehensive investigation, Physical Review D, 2023, 108(6)
3. Qi, Jing-Zhao; Jiang, Yi-Fan; Hou, Wan-Ting; Zhang, Xin ; Testing the Cosmic Distance Duality Relation Using Strong Gravitational Lensing Time Delays and Type Ia Supernovae,Astrophysical Journal, 2025, 979(1)
4. Zheng, Jie; Liu, Xiao-Hui; Qi, Jing-Zhao *; Joint Observations of Late Universe Probes:Cosmological Parameter Constraints from Gravitational Wave and Type Ia Supernova Data, ASTROPHYSICAL JOURNAL, 2024, 975(2)
5. Jing-Zhao Qi; Shang-Jie Jin; Xi-Long Fan; Jing-Fei Zhang; Xin Zhang ; Using a multi-messenger and multi-wavelength observational strategy to probe the nature of dark energy through direct measurements of cosmic expansion history, Journal of Cosmology and Astroparticle Physics, 2021, 042(12)
6. Wang, Bo; Qi, Jing-Zhao*; Zhang, Jing-Fei; Zhang, Xin* ; Cosmological Model-independent Constraints on Spatial Curvature from Strong Gravitational Lensing and SN Ia Observations, Astrophysical Journal, 2020, 898(2): 0-100
7. Qi, Jing-Zhao; Zhao, Jia-Wei; Cao, Shuo; Biesiada, Marek; Liu, Yuting ; Measurements of the Hubble constant and cosmic curvature with quasars: ultracompact radio structure and strong gravitational lensing, Monthly Notices of the Royal Astronomical Society, 2021, 503(2): 2179-2186
8. Xiao-Hui Liu; Zhen-Hua Li; Jing-Zhao Qi*; Xin Zhang* ; Galaxy-scale Test of General Relativity with Strong Gravitational Lensing, The Astrophysical Journal, 2022, 927(1)
9. Cao, Meng-Di; Zheng, Jie; Qi, Jing-Zhao*; Zhang, Xin; Zhu, Zong-Hong ; A New Way to Explore Cosmological Tensions Using Gravitational Waves and Strong Gravitational Lensing, The Astrophysical Journal, 2022, 934(2): 108-108
10. Wan-Ting Hou; Jing-Zhao Qi*; Tao Han; Jing-Fei Zhang; Shuo Cao; Xin Zhang* ; Prospects for constraining interacting dark energy models from gravitational wave and gamma ray burst joint observation, Journal of Cosmology and Astroparticle Physics, 2023, 2023(05): 17