Spontaneous wave function collapse from non-local gravitational self-energy
arXiv:2512.15393 · doi:10.1016/j.physletb.2026.140475
Abstract
We incorporate non-local gravitational self-energy, motivated by string-inspired T-duality, into the Schrödinger-Newton equation. In this framework spacetime has an intrinsic non-locality, rendering the standard linear superposition principle only an approximation valid in the absence of gravitational effects. We then invert the logic by assuming the validity of linear superposition and demonstrate that such superpositions inevitably become unstable once gravity is included. The resulting wave-function collapse arises from a fundamental tension between the equivalence principle and the quantum superposition principle in a semiclassical spacetime background. We further show that wave functions computed in inertial and freely falling frames differ by a gravitationally induced phase shift containing linear and cubic time contributions along with a constant global term. These corrections produce a global phase change and lead to a spontaneous, model-independent collapse time inversely proportional to the mass of the system.
10 pages. V2: 11 pages, discussion added; version accepted for publication in PLB
References in corpus (16)
- Gravitation and quantummechanical localization of macroobjects
- Underground test of gravity-related wave function collapse
- Quantum Corrected Black Holes from String T-Duality
- Exploring the unification of quantum theory and general relativity with a Bose-Einstein condensate
- Zero-point length from string fluctuations
- Gravity induced wave function collapse
- Massive quantum systems as interfaces of quantum mechanics and gravity
- Charged black holes from T-duality
- Entropic corrections to Friedmann equations and bouncing universe due to the zero-point length
- Quantum gravity and the zero point length
- Phase space analysis of the bouncing universe with stringy effects
- The Diósi-Penrose model of classical gravity predicts gravitationally induced entanglement
- Spontaneous Wave Function Collapse with Frame Dragging and Induced Gravity
- Schrödinger--Newton equation with spontaneous wave function collapse
- Generalized Uncertainty Principle from the Regularized Self-Energy
- Emergence of ER=EPR from non-local gravitational energy