Is Gravity an Entropic Force?
arXiv:1002.2668 · doi:10.3390/e13050936
Abstract
The remarkable connections between gravity and thermodynamics seem to imply that gravity is not fundamental but emergent, and in particular, as Verlinde suggested, gravity is probably an entropic force. In this paper, we will argue that the idea of gravity as an entropic force is debatable. It is shown that there is no convincing analogy between gravity and entropic force in Verlinde's example. Neither holographic screen nor test particle satisfies all requirements for the existence of entropic force in a thermodynamics system. Furthermore, we show that the entropy increase of the screen is not caused by its statistical tendency to increase entropy as required by the existence of entropic force, but in fact caused by gravity. Therefore, Verlinde's argument for the entropic origin of gravity is problematic. In addition, we argue that the existence of a minimum size of spacetime, together with the Heisenberg uncertainty principle in quantum theory, may imply the fundamental existence of gravity as a geometric property of spacetime. This may provide a further support for the conclusion that gravity is not an entropic force.
12 pages
References in corpus (3)
Cited by in corpus (15)
- Friedmann equations from emergence of cosmic space
- Conservative entropic forces
- On the Origin of Entropic Gravity and Inertia
- Entropic Force Scenarios and Eternal Inflation
- Entropic Corrections to Coulomb's Law
- Heat capacity of Holographic screen inspires MOND theory
- Is gravity entropic force?
- On entropic gravity: the entropy postulate, entropy content of screens and relation to quantum mechanics
- Entropic gravity versus gravitational pseudotensors in static spherically symmetric spacetimes
- Thermodynamical features of Verlinde's approach for a non-commutative Schwarzschild-anti-deSitter black hole in a broad range of scales
- Implications of maximum acceleration on dynamics
- Decoherence-Free Entropic Gravity for Dirac Fermion
- Simultaneous emergence of curved spacetime and quantum mechanics
- Entropic force law in the presence of a noncommutative inspired spacetime for a solar system scale
- Classical spacetime as a gravitational condensate: USMEG-EFT emergence in comparison to Verlinde's entropic gravity