Research interests and Projects

射电天文

第一段介绍

Radio astronomy is a vital branch of astrophysical research that explores the properties of celestial objects such as galaxies, stars, the interstellar medium, compact objects, and black holes by analyzing radio waves from the universe. It helps us understand critical issues like cosmic evolution, galaxy formation, stellar life cycles, and the nature of dark matter and dark energy. The Department of Astronomy at Tsinghua University focuses on several key areas in radio astronomy: the ISM (interstellar medium) evolution and star formation, pulsars and fast radio bursts (FRBs), the development of novel concepts for large-field-of-view detectors of the dynamic universe, such as the "Cosmic Antennae" (phase-field telescopes, distributed antenna arrays, etc.), and various radio transients. These efforts leverage advanced domestic and international facilities, including “China Sky Eye” FAST, ALMA, CHIME, JWST, GBT, and the Delingha millimeter telescope. The department actively engages in international collaborations, leading and participating in major surveys such as the FAST key programs "Commensal Radio Astronomy FasT Survey (CRAFTS)" and "Fast Radio Burst Survey". Additionally, Tsinghua's astronomy team is committed to innovation in radio astronomy technology, collaborating with leading computational and AI institutions to develop next-generation AI-driven detection and research equipment and techniques.

Radio Astronomy

射电天文学是天体物理研究的一个重要分支,它通过分析来自宇宙的无线电波来探索星系、恒星、星际介质、致密天体、黑洞等天体的物理特性,帮助我们理解宇宙的演化、星系的形成、恒星的生命周期以及暗物质和暗能量的性质等重要问题。清华大学天文系在射电天文方向上,开展了以下几个方面的科学研究:星际介质演化及恒星形成、脉冲星与快速射电暴、新型超大视场动态宇宙探测概念“宇宙触角”、多种射电暂现源等。这些工作充分利用...

Contact:

Radio astronomy is a vital branch of astrophysical research that explores the properties of celestial objects such as galaxies, stars, the interstellar medium, compact objects, and black holes by analyzing radio waves from the universe. It helps us understand critical issues like cosmic evolution, galaxy formation, stellar life cycles, and the nature of dark matter and dark energy. The Department of Astronomy at Tsinghua University focuses on several key areas in radio astronomy: the ISM (interstellar medium) evolution and star formation, pulsars and fast radio bursts (FRBs), the development of novel concepts for large-field-of-view detectors of the dynamic universe, such as the "Cosmic Antennae" (phase-field telescopes, distributed antenna arrays, etc.), and various radio transients. These efforts leverage advanced domestic and international facilities, including “China Sky Eye” FAST, ALMA, CHIME, JWST, GBT, and the Delingha millimeter telescope. The department actively engages in international collaborations, leading and participating in major surveys such as the FAST key programs "Commensal Radio Astronomy FasT Survey (CRAFTS)" and "Fast Radio Burst Survey". Additionally, Tsinghua's astronomy team is committed to innovation in radio astronomy technology, collaborating with leading computational and AI institutions to develop next-generation AI-driven detection and research equipment and techniques.

Radio Astronomy

射电天文学是天体物理研究的一个重要分支,它通过分析来自宇宙的无线电波来探索星系、恒星、星际介质、致密天体、黑洞等天体的物理特性,帮助我们理解宇宙的演化、星系的形成、恒星的生命周期以及暗物质和暗能量的性质等重要问题。清华大学天文系在射电天文方向上,开展了以下几个方面的科学研究:星际介质演化及恒星形成、脉冲星与快速射电暴、新型超大视场动态宇宙探测概念“宇宙触角”、多种射电暂现源等。这些工作充分利用...

Contact:

Radio astronomy is a vital branch of astrophysical research that explores the properties of celestial objects such as galaxies, stars, the interstellar medium, compact objects, and black holes by analyzing radio waves from the universe. It helps us understand critical issues like cosmic evolution, galaxy formation, stellar life cycles, and the nature of dark matter and dark energy. The Department of Astronomy at Tsinghua University focuses on several key areas in radio astronomy: the ISM (interstellar medium) evolution and star formation, pulsars and fast radio bursts (FRBs), the development of novel concepts for large-field-of-view detectors of the dynamic universe, such as the "Cosmic Antennae" (phase-field telescopes, distributed antenna arrays, etc.), and various radio transients. These efforts leverage advanced domestic and international facilities, including “China Sky Eye” FAST, ALMA, CHIME, JWST, GBT, and the Delingha millimeter telescope. The department actively engages in international collaborations, leading and participating in major surveys such as the FAST key programs "Commensal Radio Astronomy FasT Survey (CRAFTS)" and "Fast Radio Burst Survey". Additionally, Tsinghua's astronomy team is committed to innovation in radio astronomy technology, collaborating with leading computational and AI institutions to develop next-generation AI-driven detection and research equipment and techniques.

Radio Astronomy

射电天文学是天体物理研究的一个重要分支,它通过分析来自宇宙的无线电波来探索星系、恒星、星际介质、致密天体、黑洞等天体的物理特性,帮助我们理解宇宙的演化、星系的形成、恒星的生命周期以及暗物质和暗能量的性质等重要问题。清华大学天文系在射电天文方向上,开展了以下几个方面的科学研究:星际介质演化及恒星形成、脉冲星与快速射电暴、新型超大视场动态宇宙探测概念“宇宙触角”、多种射电暂现源等。这些工作充分利用...

Contact:

Radio astronomy is a vital branch of astrophysical research that explores the properties of celestial objects such as galaxies, stars, the interstellar medium, compact objects, and black holes by analyzing radio waves from the universe. It helps us understand critical issues like cosmic evolution, galaxy formation, stellar life cycles, and the nature of dark matter and dark energy. The Department of Astronomy at Tsinghua University focuses on several key areas in radio astronomy: the ISM (interstellar medium) evolution and star formation, pulsars and fast radio bursts (FRBs), the development of novel concepts for large-field-of-view detectors of the dynamic universe, such as the "Cosmic Antennae" (phase-field telescopes, distributed antenna arrays, etc.), and various radio transients. These efforts leverage advanced domestic and international facilities, including “China Sky Eye” FAST, ALMA, CHIME, JWST, GBT, and the Delingha millimeter telescope. The department actively engages in international collaborations, leading and participating in major surveys such as the FAST key programs "Commensal Radio Astronomy FasT Survey (CRAFTS)" and "Fast Radio Burst Survey". Additionally, Tsinghua's astronomy team is committed to innovation in radio astronomy technology, collaborating with leading computational and AI institutions to develop next-generation AI-driven detection and research equipment and techniques.

Radio Astronomy

射电天文学是天体物理研究的一个重要分支,它通过分析来自宇宙的无线电波来探索星系、恒星、星际介质、致密天体、黑洞等天体的物理特性,帮助我们理解宇宙的演化、星系的形成、恒星的生命周期以及暗物质和暗能量的性质等重要问题。清华大学天文系在射电天文方向上,开展了以下几个方面的科学研究:星际介质演化及恒星形成、脉冲星与快速射电暴、新型超大视场动态宇宙探测概念“宇宙触角”、多种射电暂现源等。这些工作充分利用...

Contact:

Radio astronomy is a vital branch of astrophysical research that explores the properties of celestial objects such as galaxies, stars, the interstellar medium, compact objects, and black holes by analyzing radio waves from the universe. It helps us understand critical issues like cosmic evolution, galaxy formation, stellar life cycles, and the nature of dark matter and dark energy. The Department of Astronomy at Tsinghua University focuses on several key areas in radio astronomy: the ISM (interstellar medium) evolution and star formation, pulsars and fast radio bursts (FRBs), the development of novel concepts for large-field-of-view detectors of the dynamic universe, such as the "Cosmic Antennae" (phase-field telescopes, distributed antenna arrays, etc.), and various radio transients. These efforts leverage advanced domestic and international facilities, including “China Sky Eye” FAST, ALMA, CHIME, JWST, GBT, and the Delingha millimeter telescope. The department actively engages in international collaborations, leading and participating in major surveys such as the FAST key programs "Commensal Radio Astronomy FasT Survey (CRAFTS)" and "Fast Radio Burst Survey". Additionally, Tsinghua's astronomy team is committed to innovation in radio astronomy technology, collaborating with leading computational and AI institutions to develop next-generation AI-driven detection and research equipment and techniques.

Radio Astronomy

射电天文学是天体物理研究的一个重要分支,它通过分析来自宇宙的无线电波来探索星系、恒星、星际介质、致密天体、黑洞等天体的物理特性,帮助我们理解宇宙的演化、星系的形成、恒星的生命周期以及暗物质和暗能量的性质等重要问题。清华大学天文系在射电天文方向上,开展了以下几个方面的科学研究:星际介质演化及恒星形成、脉冲星与快速射电暴、新型超大视场动态宇宙探测概念“宇宙触角”、多种射电暂现源等。这些工作充分利用...

Contact:

Radio astronomy is a vital branch of astrophysical research that explores the properties of celestial objects such as galaxies, stars, the interstellar medium, compact objects, and black holes by analyzing radio waves from the universe. It helps us understand critical issues like cosmic evolution, galaxy formation, stellar life cycles, and the nature of dark matter and dark energy. The Department of Astronomy at Tsinghua University focuses on several key areas in radio astronomy: the ISM (interstellar medium) evolution and star formation, pulsars and fast radio bursts (FRBs), the development of novel concepts for large-field-of-view detectors of the dynamic universe, such as the "Cosmic Antennae" (phase-field telescopes, distributed antenna arrays, etc.), and various radio transients. These efforts leverage advanced domestic and international facilities, including “China Sky Eye” FAST, ALMA, CHIME, JWST, GBT, and the Delingha millimeter telescope. The department actively engages in international collaborations, leading and participating in major surveys such as the FAST key programs "Commensal Radio Astronomy FasT Survey (CRAFTS)" and "Fast Radio Burst Survey". Additionally, Tsinghua's astronomy team is committed to innovation in radio astronomy technology, collaborating with leading computational and AI institutions to develop next-generation AI-driven detection and research equipment and techniques.

Radio Astronomy

射电天文学是天体物理研究的一个重要分支,它通过分析来自宇宙的无线电波来探索星系、恒星、星际介质、致密天体、黑洞等天体的物理特性,帮助我们理解宇宙的演化、星系的形成、恒星的生命周期以及暗物质和暗能量的性质等重要问题。清华大学天文系在射电天文方向上,开展了以下几个方面的科学研究:星际介质演化及恒星形成、脉冲星与快速射电暴、新型超大视场动态宇宙探测概念“宇宙触角”、多种射电暂现源等。这些工作充分利用...

Contact:

Radio astronomy is a vital branch of astrophysical research that explores the properties of celestial objects such as galaxies, stars, the interstellar medium, compact objects, and black holes by analyzing radio waves from the universe. It helps us understand critical issues like cosmic evolution, galaxy formation, stellar life cycles, and the nature of dark matter and dark energy. The Department of Astronomy at Tsinghua University focuses on several key areas in radio astronomy: the ISM (interstellar medium) evolution and star formation, pulsars and fast radio bursts (FRBs), the development of novel concepts for large-field-of-view detectors of the dynamic universe, such as the "Cosmic Antennae" (phase-field telescopes, distributed antenna arrays, etc.), and various radio transients. These efforts leverage advanced domestic and international facilities, including “China Sky Eye” FAST, ALMA, CHIME, JWST, GBT, and the Delingha millimeter telescope. The department actively engages in international collaborations, leading and participating in major surveys such as the FAST key programs "Commensal Radio Astronomy FasT Survey (CRAFTS)" and "Fast Radio Burst Survey". Additionally, Tsinghua's astronomy team is committed to innovation in radio astronomy technology, collaborating with leading computational and AI institutions to develop next-generation AI-driven detection and research equipment and techniques.

Radio Astronomy

射电天文学是天体物理研究的一个重要分支,它通过分析来自宇宙的无线电波来探索星系、恒星、星际介质、致密天体、黑洞等天体的物理特性,帮助我们理解宇宙的演化、星系的形成、恒星的生命周期以及暗物质和暗能量的性质等重要问题。清华大学天文系在射电天文方向上,开展了以下几个方面的科学研究:星际介质演化及恒星形成、脉冲星与快速射电暴、新型超大视场动态宇宙探测概念“宇宙触角”、多种射电暂现源等。这些工作充分利用...

Contact:

Radio astronomy is a vital branch of astrophysical research that explores the properties of celestial objects such as galaxies, stars, the interstellar medium, compact objects, and black holes by analyzing radio waves from the universe. It helps us understand critical issues like cosmic evolution, galaxy formation, stellar life cycles, and the nature of dark matter and dark energy. The Department of Astronomy at Tsinghua University focuses on several key areas in radio astronomy: the ISM (interstellar medium) evolution and star formation, pulsars and fast radio bursts (FRBs), the development of novel concepts for large-field-of-view detectors of the dynamic universe, such as the "Cosmic Antennae" (phase-field telescopes, distributed antenna arrays, etc.), and various radio transients. These efforts leverage advanced domestic and international facilities, including “China Sky Eye” FAST, ALMA, CHIME, JWST, GBT, and the Delingha millimeter telescope. The department actively engages in international collaborations, leading and participating in major surveys such as the FAST key programs "Commensal Radio Astronomy FasT Survey (CRAFTS)" and "Fast Radio Burst Survey". Additionally, Tsinghua's astronomy team is committed to innovation in radio astronomy technology, collaborating with leading computational and AI institutions to develop next-generation AI-driven detection and research equipment and techniques.

Radio Astronomy

射电天文学是天体物理研究的一个重要分支,它通过分析来自宇宙的无线电波来探索星系、恒星、星际介质、致密天体、黑洞等天体的物理特性,帮助我们理解宇宙的演化、星系的形成、恒星的生命周期以及暗物质和暗能量的性质等重要问题。清华大学天文系在射电天文方向上,开展了以下几个方面的科学研究:星际介质演化及恒星形成、脉冲星与快速射电暴、新型超大视场动态宇宙探测概念“宇宙触角”、多种射电暂现源等。这些工作充分利用...

Contact:

Radio astronomy is a vital branch of astrophysical research that explores the properties of celestial objects such as galaxies, stars, the interstellar medium, compact objects, and black holes by analyzing radio waves from the universe. It helps us understand critical issues like cosmic evolution, galaxy formation, stellar life cycles, and the nature of dark matter and dark energy. The Department of Astronomy at Tsinghua University focuses on several key areas in radio astronomy: the ISM (interstellar medium) evolution and star formation, pulsars and fast radio bursts (FRBs), the development of novel concepts for large-field-of-view detectors of the dynamic universe, such as the "Cosmic Antennae" (phase-field telescopes, distributed antenna arrays, etc.), and various radio transients. These efforts leverage advanced domestic and international facilities, including “China Sky Eye” FAST, ALMA, CHIME, JWST, GBT, and the Delingha millimeter telescope. The department actively engages in international collaborations, leading and participating in major surveys such as the FAST key programs "Commensal Radio Astronomy FasT Survey (CRAFTS)" and "Fast Radio Burst Survey". Additionally, Tsinghua's astronomy team is committed to innovation in radio astronomy technology, collaborating with leading computational and AI institutions to develop next-generation AI-driven detection and research equipment and techniques.

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