Consider a proposed model of the universe with $\hbar$ much greater than its well-known value of $10^{-34} Js$. In this model universe, very large objects can show quantum behaviors. In a scenario with large extra dimensions, $\hbar$ can attains very large values depending on the dimensionality of spacetime. In this letter, we show that although conventional thinking indicates that quantum gravitational effects should manifest themselves only at very small scales, in actuality quantum gravitational effects can manifest themselves at large scales too. We use the generalized uncertainty principle with a non-zero minimal uncertainty in momentum as our primary input to construct a mathematical framework for our proposal
Sherpa Romeo green journal. Open access article. Creative Commons Attribution 4.0 International Lic...
General relativity and quantum theory are often cited as the two pillars of modern theoretical physi...
I argue that the true quantum gravity scale cannot be much larger than the Planck length, because if...
Quantum gravity places entirely new challenges on the formulation of a consistent theory as well as ...
It has recently been shown that any observed potential can in principle be generated via quantum mec...
Quantum gravity effects modify the Heisenberg's uncertainty principle to the generalized uncertainty...
I outline motivations for believing that important quantum gravity effects lie beyond the Planck sca...
The quantum gravity processes that have taken place in the very early Universe are probably responsi...
AbstractWe adapt the horizon wave-function formalism to describe massive static spherically symmetri...
The idea that quantum gravity can be realized at the TeV scale is extremely attractive to theorists ...
We show how, by considering the cumulative effect of tiny quantum gravitational fluctuations over ve...
The existence of a fundamental scale, a lower bound to any output of a position measurement, seems t...
We investigate possible signatures of quantum gravity which could be tested with current and future ...
Motivation for quantizing gravity comes from the remarkable success of the quantum theories of the o...
Recently it was demonstrated that the theoretical predictions for the Planck scale space-time fluctu...
Sherpa Romeo green journal. Open access article. Creative Commons Attribution 4.0 International Lic...
General relativity and quantum theory are often cited as the two pillars of modern theoretical physi...
I argue that the true quantum gravity scale cannot be much larger than the Planck length, because if...
Quantum gravity places entirely new challenges on the formulation of a consistent theory as well as ...
It has recently been shown that any observed potential can in principle be generated via quantum mec...
Quantum gravity effects modify the Heisenberg's uncertainty principle to the generalized uncertainty...
I outline motivations for believing that important quantum gravity effects lie beyond the Planck sca...
The quantum gravity processes that have taken place in the very early Universe are probably responsi...
AbstractWe adapt the horizon wave-function formalism to describe massive static spherically symmetri...
The idea that quantum gravity can be realized at the TeV scale is extremely attractive to theorists ...
We show how, by considering the cumulative effect of tiny quantum gravitational fluctuations over ve...
The existence of a fundamental scale, a lower bound to any output of a position measurement, seems t...
We investigate possible signatures of quantum gravity which could be tested with current and future ...
Motivation for quantizing gravity comes from the remarkable success of the quantum theories of the o...
Recently it was demonstrated that the theoretical predictions for the Planck scale space-time fluctu...
Sherpa Romeo green journal. Open access article. Creative Commons Attribution 4.0 International Lic...
General relativity and quantum theory are often cited as the two pillars of modern theoretical physi...
I argue that the true quantum gravity scale cannot be much larger than the Planck length, because if...