scholarly journals Exact lattice supersymmetry at the quantum level for N = 2 Wess–Zumino models in 1- and 2-dimensions

2016 ◽  
Vol 31 (23) ◽  
pp. 1650125 ◽  
Author(s):  
Keisuke Asaka ◽  
Alessandro D’Adda ◽  
Noboru Kawamoto ◽  
Yoshi Kondo

Supersymmetric lattice Ward–Takahashi identities are investigated perturbatively up to two-loop corrections for super doubler approach of [Formula: see text] lattice Wess–Zumino models in 1- and 2-dimensions. In this approach, notorious chiral fermion doublers are treated as physical particles and momentum conservation is modified in such a way that lattice Leibniz rule is satisfied. The two major difficulties to keep exact lattice supersymmetry are overcome. This formulation defines, however, nonlocal field theory. Nevertheless we confirm that exact supersymmetry on the lattice is realized for all supercharges at the quantum level. Delicate issues of associativity are also discussed.

Author(s):  
Robert P. Lipton ◽  
Prashant K. Jha

AbstractA nonlocal field theory of peridynamic type is applied to model the brittle fracture problem. The elastic fields obtained from the nonlocal model are shown to converge in the limit of vanishing non-locality to solutions of classic plane elastodynamics associated with a running crack. We carry out our analysis for a plate subject to mode one loading. The length of the crack is prescribed a priori and is an increasing function of time.


1977 ◽  
Vol 103 (1) ◽  
pp. 169-184 ◽  
Author(s):  
G.V Efimov ◽  
M.A Ivanov ◽  
O.A Mogilevsky

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