We present a calculation of the standard model Delta S=2 matrix element relevant to indirect CP violation in K->pipi decays which uses Neuberger's chiral formulation of lattice fermions. The computation is performed in the quenched approximation on a 16^3x32 lattice that has a lattice spacing asim 0.1 fm. The resulting bare matrix element is renormalized non-perturbatively. Our main result is B_K^{RGI}=0.87(8)^{+2+14}_{-1-14}, where the first error is statistical, the second is systematic and the third is an estimate of the uncertainty associated with the quenched approximation and with the fact that our kaons are composed of degenerate s and d quarks with masses sim m_s/2
We present a quenched lattice study of the form factors f(+)(q(2)) and f(0)(q2) of the matrix elemen...
We determine the neutral kaon mixing matrix element B-K in the continuum limit with 2 + 1 flavors of...
Lattice QCD should allow a derivation of the Delta I = 1/2 rule from first principles, but numerical...
We present results for the \Delta S=2 matrix elements which are required to study neutral kaon mixin...
We explore the application of the domain wall fermion formalism of lattice QCD to calculate the K ⃗ ...
The coupling constants of the order p^2 low-energy weak effective lagrangian can be determined from ...
RBC and UKQCD collaborations The use of chiral perturbation theory in extracting physical K → pipi m...
The kaon B parameter is calculated in quenched lattice QCD with the Wilson quark action. The mixing ...
We present the inconsistencies which arise in quenched QCD in $\Delta I=1/2$ non-leptonic kaon decay...
The interpretation of nuclear electric dipole moment (EDM) experiments is clouded by large theoretic...
I present quenched, lattice QCD calculations of the hadronic matrix elements relevant for B^0_{d(s)}...
AbstractWe present an approach for computing the real parts of the nonleptonic B→DP and B→D¯P (P=K,π...
In this thesis, we calculate the kaon B-parameter BK in quenched lattice QCD with exact chiral symme...
We have gained enough statistical precision to distinguish signal from noise in matrix elements of a...
K → pi and K → 0 weak matrix elements of ∆S = 1 operators have been measured in 2+1 flavor domain wa...
We present a quenched lattice study of the form factors f(+)(q(2)) and f(0)(q2) of the matrix elemen...
We determine the neutral kaon mixing matrix element B-K in the continuum limit with 2 + 1 flavors of...
Lattice QCD should allow a derivation of the Delta I = 1/2 rule from first principles, but numerical...
We present results for the \Delta S=2 matrix elements which are required to study neutral kaon mixin...
We explore the application of the domain wall fermion formalism of lattice QCD to calculate the K ⃗ ...
The coupling constants of the order p^2 low-energy weak effective lagrangian can be determined from ...
RBC and UKQCD collaborations The use of chiral perturbation theory in extracting physical K → pipi m...
The kaon B parameter is calculated in quenched lattice QCD with the Wilson quark action. The mixing ...
We present the inconsistencies which arise in quenched QCD in $\Delta I=1/2$ non-leptonic kaon decay...
The interpretation of nuclear electric dipole moment (EDM) experiments is clouded by large theoretic...
I present quenched, lattice QCD calculations of the hadronic matrix elements relevant for B^0_{d(s)}...
AbstractWe present an approach for computing the real parts of the nonleptonic B→DP and B→D¯P (P=K,π...
In this thesis, we calculate the kaon B-parameter BK in quenched lattice QCD with exact chiral symme...
We have gained enough statistical precision to distinguish signal from noise in matrix elements of a...
K → pi and K → 0 weak matrix elements of ∆S = 1 operators have been measured in 2+1 flavor domain wa...
We present a quenched lattice study of the form factors f(+)(q(2)) and f(0)(q2) of the matrix elemen...
We determine the neutral kaon mixing matrix element B-K in the continuum limit with 2 + 1 flavors of...
Lattice QCD should allow a derivation of the Delta I = 1/2 rule from first principles, but numerical...