A recent paper (gr-qc/9909017) criticizes our work on the structure of spacetime foam. Its authors argue that the quantum uncertainty limit for the position of the quantum clock in a gedanken timing experiment, obtained by Wigner and used by us, is based on unrealistic assumptions. Here we point out some flaws in their argument. We also discuss their other comments and some other issues related to our work, including a simple connection to the holographic principle. We see no reason to change our cautious optimism on the detectability of spacetime foam with future refinements of modern gravitational-wave interferometers like LIGO/VIRGO and LISA
Aims. The small-scale nature of spacetime can be tested with observations of distant quasars. We com...
We show that quantum mechanics and general relativity limit the speed nu of a simple computer (such ...
The expectation that it should not be possible to gain experimental insight on the structure of spac...
A recent paper (gr-qc/9909017) criticizes our work on the structure of spacetime foam. Its authors a...
By analyzing a gedanken experiment designed to measure the distance l between two spatially separate...
The recent paper gr-qc/9909017 criticizes the limit on the measurability of distances that was deriv...
Spacetime is composed of a fluctuating arrangement of bubbles or loops called spacetime foam, or qua...
Spacetime foam, also known as quantum foam, has its origin in quantum fluctuations of spacetime. Arg...
If spacetime undergoes quantum fluctuations, an electromagnetic wavefront will acquire uncertainties...
We reply to the comments by P.Midodashvili about our previous paper [1]. We argue that, contrary to ...
Using a \emph{gedanken} experiment providing presumably a minimal inaccuracy the uncertainty contrib...
Nearly all theoretical approaches to the unification of quantum mechanics and gravity predict(1-4) t...
We critically discuss the measure of very short time intervals. By means of a Gedankenexperiment, we...
Because of quantum fluctuations, spacetime is probably "foamy" on very small scales. We propose to d...
t was recently proposed to use extra-galactic point sources to constrain space-time quantum fluctuat...
Aims. The small-scale nature of spacetime can be tested with observations of distant quasars. We com...
We show that quantum mechanics and general relativity limit the speed nu of a simple computer (such ...
The expectation that it should not be possible to gain experimental insight on the structure of spac...
A recent paper (gr-qc/9909017) criticizes our work on the structure of spacetime foam. Its authors a...
By analyzing a gedanken experiment designed to measure the distance l between two spatially separate...
The recent paper gr-qc/9909017 criticizes the limit on the measurability of distances that was deriv...
Spacetime is composed of a fluctuating arrangement of bubbles or loops called spacetime foam, or qua...
Spacetime foam, also known as quantum foam, has its origin in quantum fluctuations of spacetime. Arg...
If spacetime undergoes quantum fluctuations, an electromagnetic wavefront will acquire uncertainties...
We reply to the comments by P.Midodashvili about our previous paper [1]. We argue that, contrary to ...
Using a \emph{gedanken} experiment providing presumably a minimal inaccuracy the uncertainty contrib...
Nearly all theoretical approaches to the unification of quantum mechanics and gravity predict(1-4) t...
We critically discuss the measure of very short time intervals. By means of a Gedankenexperiment, we...
Because of quantum fluctuations, spacetime is probably "foamy" on very small scales. We propose to d...
t was recently proposed to use extra-galactic point sources to constrain space-time quantum fluctuat...
Aims. The small-scale nature of spacetime can be tested with observations of distant quasars. We com...
We show that quantum mechanics and general relativity limit the speed nu of a simple computer (such ...
The expectation that it should not be possible to gain experimental insight on the structure of spac...