Aiming at the core gap in the century-old quantum measurement problem of quantum mechanics, that is, the lack of underlying motivation for the observation behavior to trigger wave function collapse, this paper proposes a distributed quantum observation model from the perspective of information physical constraints. This paper takes the verified physical laws such as Planck scale, Bekenstein bound and Landauer's principle as objective constraints, without transcendental presuppositions. The derivation shows that the computing power and energy consumption of global realtime classical state rendering far exceed the physical limit, and distributed on-demand extraction of classical state is the only stable operation mode of the system. This paper clarifies three objective criteria for effective observers, and puts forward a falsifiable prediction that "the survival time of superposition state is inversely proportional to the number of effective observers", which provides a self-consistent solution for the quantum measurement problem.
Meng Wang (Fri,) studied this question.