16 citations · 17 across the 2 of their papers we have counts for
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Two-dimensional super Yang-Mills theory investigated with improved resolution
J. R. Hiller, M. Harada, S. S. Pinsky +2
In earlier work, N=(1,1) super Yang--Mills theory in two dimensions was found to have several interesting properties, though these properties could not be investigated in any detai…
N=1 super Yang-Mills on a (3+1) dimensional transverse lattice with one exact supersymmetry
Motomichi Harada, Stephen Pinsky
We formulate =1 super Yang-Mills theory in 3+1 dimensions on a two dimensional transverse lattice using supersymmetric discrete light cone quantization in the large-…
A solution to the fermion doubling problem for supersymmetric theories on the transverse lattice
Motomichi Harada, Stephen Pinsky
Species doubling is a problem that infects most numerical methods that use a spatial lattice. An understanding of species doubling can be found in the Nielsen-Ninomiya theorem whic…
N=(1,1) super Yang--Mills theory in 1+1 dimensions at finite temperature
John R. Hiller, Yiannis Proestos, Stephen Pinsky +1
We present a formulation of N=(1,1) super Yang-Mills theory in 1+1 dimensions at finite temperature. The partition function is constructed by finding a numerical approximation to t…
Improved results for N=(2,2) super Yang-Mills theory using supersymmetric discrete light-cone quantization
Motomichi Harada, John R. Hiller, Stephen Pinsky +1
We consider the (1+1)-dimensional super Yang--Mills theory which is obtained by dimensionally reducing super Yang--Mills theory in four dimension to t…