Area of research
Nuclear and High Energy Physics · Condensed Matter Physics
Research interest
Research focused on Gluino and Lattice QCD, with related work in Supersymmetry, Fermion, Particle physics. Notable publications include 'HotQCD on multi-GPU Systems', 'SIMULATeQCD: A simple multi-GPU lattice code for QCD calculations', and 'Numerical Results for the Lightest Bound States in N = 1 Supersymmetric SU(3) Yang-Mills Theory'.
SIMULATeQCD: A simple multi-GPU lattice code for QCD calculations
SIMULATeQCD: A simple multi-GPU lattice code for QCD calculations
HotQCD on multi-GPU Systems
Continuum extrapolation of Ward identities in $${{\\mathcal {N}}=1}$$ supersymmetric SU(3) Yang–Mills theory
DESY Publication Database (PUBDB) (Deutsches Elektronen-Synchrotron) 2020cited by 7position: last
Numerical Results for the Lightest Bound States in <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"><mml:mi mathvariant="script">N</mml:mi><mml:mo>=</mml:mo><mml:mn>1</mml:mn></mml:math> Supersymmetric SU(3) Yang-Mills Theory
Indications for infrared conformal behaviour of SU(2) gauge theory with $N_f=3/2$ flavours of adjoint fermions
The light bound states of N=1 supersymmetric SU(3) Yang-Mills theory on the lattice
Low energy properties of SU(2) gauge theory with Nf = 3/2 flavours of adjoint fermions
University of Regensburg Publication Server (University of Regensburg) 2018cited by 17position: middle
Improved results for the mass spectrum of <i>N</i> = 1 supersymmetric SU(3) Yang-Mills theory
N=1 supersymmetric Yang-Mills theory and the gluino condensate from the gradient flow
Verhandlungen der Deutschen Physikalischen Gesellschaft 2018cited by 0position: middle