We investigate the emergence of N = 1 supersymmetry in the long-range behavior of three-dimensional parity-symmetric Yukawa systems. We discuss a renormalization approach that manifestly preserves supersymmetry whenever such symmetry is realized, and use it to prove that supersymmetry-breaking operators are irrelevant, thus proving that such operators are suppressed in the infrared. All our findings are illustrated with the aid of the ϵ-expansion and a functional variant of perturbation theory, but we provide numerical estimates of critical exponents that are based on the non-perturbative functional renormalization group
We study the renormalization of (softly) broken supersymmetric theories at the one loop level in det...
We present a new mechanism, which does not require any flavor symmetry, to explain the small Yukawa ...
In this thesis we renormalized a general Yukawa theory that depends on an arbitrary number of fields...
We investigate the emergence of N = 1 supersymmetry in the long-range behavior of three-dimensional ...
AbstractWe renormalize models with scalar chiral superfields with an odd superpotential to several o...
AbstractIn this work, we investigate the consequences of the Renormalization Group Equation (RGE) in...
This thesis analyses scalar supersymmetric field theories within the framework of the functional ren...
We study the renormalization group evolution and infrared stable fixed points of the Yukawa coupling...
We investigate one-loop renormalization group evolutions of extended sectors of Yukawa type coupling...
This work consists of two parts. Part One studies the bounds on fermion masses when the mass is gain...
We calculate the three loop anomalous dimension for a general N=1 supersymmetric gauge theory. The r...
Different Yukawa systems in three and four dimensions are investigated. The four-dimensional systems...
We extend to all orders in perturbation theory a method to calculate supersymmetry-breaking effects ...
We obtain general analytical forms for the solutions of the one-loop renormalization group equations...
The 1-loop evolution of couplings in the minimal supersymmetric standard model, extended to include ...
We study the renormalization of (softly) broken supersymmetric theories at the one loop level in det...
We present a new mechanism, which does not require any flavor symmetry, to explain the small Yukawa ...
In this thesis we renormalized a general Yukawa theory that depends on an arbitrary number of fields...
We investigate the emergence of N = 1 supersymmetry in the long-range behavior of three-dimensional ...
AbstractWe renormalize models with scalar chiral superfields with an odd superpotential to several o...
AbstractIn this work, we investigate the consequences of the Renormalization Group Equation (RGE) in...
This thesis analyses scalar supersymmetric field theories within the framework of the functional ren...
We study the renormalization group evolution and infrared stable fixed points of the Yukawa coupling...
We investigate one-loop renormalization group evolutions of extended sectors of Yukawa type coupling...
This work consists of two parts. Part One studies the bounds on fermion masses when the mass is gain...
We calculate the three loop anomalous dimension for a general N=1 supersymmetric gauge theory. The r...
Different Yukawa systems in three and four dimensions are investigated. The four-dimensional systems...
We extend to all orders in perturbation theory a method to calculate supersymmetry-breaking effects ...
We obtain general analytical forms for the solutions of the one-loop renormalization group equations...
The 1-loop evolution of couplings in the minimal supersymmetric standard model, extended to include ...
We study the renormalization of (softly) broken supersymmetric theories at the one loop level in det...
We present a new mechanism, which does not require any flavor symmetry, to explain the small Yukawa ...
In this thesis we renormalized a general Yukawa theory that depends on an arbitrary number of fields...