We investigate off-shell perturbative renormalisation of pure quantum gravity for both background metric and quantum fluctuations. We show that at each new loop order, the divergences that do not vanish on-shell are constructed from only the total metric, whilst those that vanish on-shell are renormalised by canonical transformations involving the quantum fields. Purely background metric divergences do not separately appear, and the background metric does not get renormalised. We highlight that renormalisation group identities play a crucial role ensuring consistency in the renormalisation of BRST transformations beyond one loop order. We verify these assertions by computing leading off-shell divergences to two loops, exploiting off-shell B...
Abstract One of the main advantages of super-renormalizable higher derivative quantum gravity models...
We show that a previously proposed new mechanism to eliminate quadratic divergences for scalar masse...
We discuss a two-loop calculation showing that the S matrix of Einstein's theory of gravity contains...
We investigate off-shell perturbative renormalisation of pure quantum gravity for both background me...
We show that the Wilsonian renormalization group (RG) provides a natural regularisation of the Quant...
We show how to remove the divergences in an arbitrary gauge-field theory (possibly nonrenormalizable...
A geometric formulation of Wilson’s exact renormalisation group is presented based on a gauge invari...
Abstract There is an ambiguity in choosing field-strength renormalization factors in the MS ¯ $$ \ov...
Abstract We compute the one-loop divergences in a higher-derivative theory of gravity including Ricc...
In the past few years a new method of regularization, called operator regularization (o.r.), has bee...
We discuss various realizations of the Weyl group in the background field expansion of quantum gravi...
The structure of counterterms in higher derivative quantum gravity is reexamined. Nontrivial depende...
30 pages, 1 figure, 20 ref.In the framework of dimensional regularization, we propose a generalizati...
AbstractWe use functional renormalization group methods to study gravity minimally coupled to a free...
We perform a general computation of the off-shell one-loop divergences in Einstein gravity, in a two...
Abstract One of the main advantages of super-renormalizable higher derivative quantum gravity models...
We show that a previously proposed new mechanism to eliminate quadratic divergences for scalar masse...
We discuss a two-loop calculation showing that the S matrix of Einstein's theory of gravity contains...
We investigate off-shell perturbative renormalisation of pure quantum gravity for both background me...
We show that the Wilsonian renormalization group (RG) provides a natural regularisation of the Quant...
We show how to remove the divergences in an arbitrary gauge-field theory (possibly nonrenormalizable...
A geometric formulation of Wilson’s exact renormalisation group is presented based on a gauge invari...
Abstract There is an ambiguity in choosing field-strength renormalization factors in the MS ¯ $$ \ov...
Abstract We compute the one-loop divergences in a higher-derivative theory of gravity including Ricc...
In the past few years a new method of regularization, called operator regularization (o.r.), has bee...
We discuss various realizations of the Weyl group in the background field expansion of quantum gravi...
The structure of counterterms in higher derivative quantum gravity is reexamined. Nontrivial depende...
30 pages, 1 figure, 20 ref.In the framework of dimensional regularization, we propose a generalizati...
AbstractWe use functional renormalization group methods to study gravity minimally coupled to a free...
We perform a general computation of the off-shell one-loop divergences in Einstein gravity, in a two...
Abstract One of the main advantages of super-renormalizable higher derivative quantum gravity models...
We show that a previously proposed new mechanism to eliminate quadratic divergences for scalar masse...
We discuss a two-loop calculation showing that the S matrix of Einstein's theory of gravity contains...