학술논문

Attraction Induced by Mutual Quantum Measurements of Velocity
Document Type
Working Paper
Source
AIP Conference Proceedings 2362, 040004 (2021)
Subject
Quantum Physics
Condensed Matter - Other Condensed Matter
General Relativity and Quantum Cosmology
High Energy Physics - Theory
Language
Abstract
We define the notion of mutual quantum measurements of two macroscopic objects and investigate the effect of these measurements on the velocities of the objects. We show that multiple mutual quantum measurements can lead to an effective force emerging as a consequence of asymmetric diffusion in the velocity space. We further show that, under a certain set of assumptions involving the measurements of mutual Doppler shifts, the above force can reproduce Newton's law of gravitation. Such a mechanism would explain the equivalence between the gravitational and the inertial masses. For a broader class of measurements, the emergent force can also lead to corrections to Newton's gravitation.
Comment: 12 pages, 3 figures