arXiv · gr-qc/9805024
Bounds on negative energy densities in flat spacetime
Abstract
We generalise results of Ford and Roman which place lower bounds -- known as quantum inequalities -- on the renormalised energy density of a quantum field averaged against a choice of sampling function. Ford and Roman derived their results for a specific non-compactly supported sampling function; here we use a different argument to obtain quantum inequalities for a class of smooth, even and non-negative sampling functions which are either compactly supported or decay rapidly at infinity. Our results hold in $d$-dimensional Minkowski space ($d\ge 2$) for the free real scalar field of mass $m\ge 0$. We discuss various features of our bounds in 2 and 4 dimensions. In particular, for massless field theory in 2-dimensional Minkowski space, we show that our quantum inequality is weaker than Flanagan's optimal bound by a factor of 3/2.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
C. J. Fewster, S. P. Eveson. 1998-07-08. Bounds on negative energy densities in flat spacetime. https://doi.org/10.1103/physrevd.58.084010
Cite the original work for its findings. Save a collection to share your selection of sources.