This work provides an operational interpretation of gravitational self-energy in quantum superposition states. Extending my previous analysis of black hole singularities as operational limits, I argue that divergences appearing in gravity-induced collapse models should be seen as indicators of the breakdown of classical spacetime concepts rather than as physically realized infinities. Within this framework, wave function collapse emerges as an effective phenomenological description tied to the operational resolution of spacetime itself. The approach clarifies conceptual issues in gravity-related quantum models without introducing new fundamental postulates.
Alperen ÖZER (Tue,) studied this question.