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We initiate the study of gravitational wave (GW) signals from first-order phase transitions in supersymmetry-breaking hidden sectors.
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2001
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N. Seto, S. Kawamura and T. Nakamura, Possibility of Direct Measurement of the Acceleration of the Universe Using 0.1-Hz Band Laser Interferometer Gravitational Wave Antenna in Space , Phys. Rev. Lett. 87
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K. Schmitz, New Sensitivity Curves for Gravitational-Wave Experiments , 2002.04615
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J. L. Feng, A. Rajaraman and F. Takayama, Superweakly interacting massive particles , Phys. Rev. Lett. 91
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J. L. Feng, A. Rajaraman and F. Takayama, SuperWIMP dark matter signals from the early universe , Phys. Rev. D 68
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2013
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N. Craig and D. Green, Testing Split Supersymmetry with Inflation , JHEP 07
2014
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2014
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T. Vaknin, New Phases in O‘raifeartaigh-Like Models and R-Symmetry Breaking , JHEP 09
2014
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Y. Nakai and M. Reece, Electric Dipole Moments in Natural Supersymmetry , JHEP 08
2017
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D. Bodeker and G. D. Moore, Electroweak Bubble Wall Speed Limit , JCAP 05
2017
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W.-R. Hu and Y.-L. Wu, The Taiji Program in Space for Gravitational Wave Physics and the Nature of Gravity , Natl. Sci. Rev. 4
2017
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V. Guada, A. Maiezza and M. Nemevšek, Multifield Polygonal Bounces , Phys. Rev. D 99
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ATLAS Collaboration
2020
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E. Pierpaoli, S. Borgani, A. Masiero and M. Yamaguchi, The Formation of cosmic structures in a light gravitino dominated universe , Phys. Rev. D 57
2089
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