arXiv · 2609.09991
Critical Scalarization for a Self-Gravitating Bosonic Condensate
Abstract
We establish a minimal nonrelativistic realization of scalarization in a self-gravitating bosonic condensate coupled to a scalar response field. A local effective-mass shift and nonlinear saturation generate a multibranch structure with two distinct transition routes. In the linearly stable regime, a finite perturbation drives a first-order transition with type-I logarithmic scaling near threshold. Beyond the linear onset, small perturbations grow tachyonically, and the response time controls both the growth and the subsequent breathing dynamics. These results identify a common mechanism for scalarization across relativistic compact objects and nonrelativistic condensates, and point toward laboratory analogues in coherent media.
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Meng-Yun Lai, Hyat Huang, Wen-Cong Gan, De-Cheng Zou, Yun Soo Myung. 2026-09-09. Critical Scalarization for a Self-Gravitating Bosonic Condensate. https://arxiv.org/abs/2609.09991
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