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LISA is a space-based mHz gravitational-wave observatory, with a planned launch in 2034.
1907
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M. Tinto and O. Hartwig, Time-Delay Interferometry and Clock-Noise Calibration, Phys. Rev. D 98
2018
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2019
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J.-B. Bayle, Simulation and Data Analysis for LISA : Instrumental Modeling, Time-Delay Interferometry, Noise-Reduction Permormance Study, and Discrimination of Transient Gravitational Signals , Ph.D. thesis, Paris U. VII, APC (2019)
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2010
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2011
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J. J. Esteban Delgado, Laser Ranging and Data Communication for the Laser Interferometer Space Antenna , Ph.D. thesis , Leibniz U., Hannover (2012)
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M. Otto, Time-Delay Interferometry Simulations for the Laser Interferometer Space Antenna , Ph.D. thesis , Leibniz U., Hannover (2015)
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S. Barke, Inter-spacecraft frequency distribution for future gravitational wave observatories , Ph.D. thesis , Leibniz U., Hannover (2015)
2015
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2017
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2018
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2021
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L. Wissel, A. Wittchen, T. S. Schwarze, M. Hewitson, G. Heinzel, and H. Halloin, Relative-Intensity-Noise Coupling in Heterodyne Interferometers, Phys. Rev. Applied 17
2022
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2022
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M. Staab, J.-B. Bayle, and O. Hartwig, PyTDI (2022)
2022
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2022
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S. Paczkowski, R. Giusteri, M. Hewitson, N. Karnesis, E. D. Fitzsimons, G. Wanner, and G. Heinzel, Postprocessing subtraction of tilt-to-length noise in LISA, Phys. Rev. D 106
2022
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