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Finite-Capacity Thermodynamics of Causal Horizons. [PDF]
Antiba CA.
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The Development of Phasemeter for Taiji Space Gravitational Wave Detection
Microgravity Science and Technology, 2018Taiji space gravitational wave detection utilizes the laser interferometer to convert the tiny distance change into the phase fluctuation of the beat note. As to realize the sensitivity of 1 pm/√ Hz, the phasemeter needs to calculate the phase with the precision of 2πμ rad/√ Hz in the frequency range of 0.1 mHz and 1 Hz. In this paper, we report recent
Ziren Luo, Heshan Liu
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Review of micro propulsion technology for space gravitational waves detection
Acta Astronautica, 2022Ming Zeng, Hui Liu, Ming Zeng
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Detecting gravitomagnetism with space-based gravitational wave observatories
Classical and Quantum Gravity, 2022Abstract We discuss the idea of a measurement that, making use of data from space interferometers, could detect the gravito-magnetic field generated by the rotation of the Milky Way, including the possible contribution of the dark matter halo. The galactic signal would be superposed to the gravito-magnetic field of the Sun.
A Tartaglia +4 more
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Laser ranging and data communication for space gravitational wave detection
Chinese Optics, 2019刘河山 LIU He-shan +3 more
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Space based lasers for gravitational wave detection
Laser Congress 2019 (ASSL, LAC, LS&C), 2019We present the requirements, design, and tests of a potential laser system for the Laser Interferometer Space Antenna (LISA) mission as well as a potential frequency stabilization system.
Christian Greve +30 more
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Measuring self-gravity of spacecraft for space gravitational wave detection
Physical Review DLiu Qi
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LISA: Detecting Gravitational Waves from Space
Frontiers in Optics 2009/Laser Science XXV/Fall 2009 OSA Optics & Photonics Technical Digest, 2009The laser interferometer space antenna (LISA), a joint NASA/ESA mission, will be the first dedicated gravitational wave detector in space. This presentation will provide a tutorial of the LISA measurement concept.
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Interferometry for space-based gravitational wave detection
2005 Quantum Electronics and Laser Science Conference, 2005The Laser Interferometer Space Antenna (LISA) will be the first space-based laser interferometric gravitational wave detector. LISA poses a new set of challenges, requiring picometer level interferometric measurements between spacecraft separated by 5 million kilometers.
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Laser Interferometry in Space for Gravitational Wave Detection and Geodesy
Conference on Lasers and Electro-Optics 2012, 2012Laser interferometry between drag-free satellites has been under development for 20 years. It will be used for the observation of low-frequency gravitational waves in LISA. Similar technology will be employed for the GRACE Follow-On Geodesy mission.
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