The focus point region of supersymmetric models is compelling in that it simultaneously features low fine-tuning, provides a decoupling solution to the SUSY flavor and CP problems, suppresses proton decay rates and can accommodate the WMAP measured cold dark matter (DM) relic density through a mixed bino-higgsino dark matter particle. We present the focus point region in terms of a weak scale parameterization, which allows for a relatively model independent compilation of phenomenological constraints and prospects. We present direct and indirect neutralino dark matter detection rates for two different halo density profiles, and show that prospects for direct DM detection and indirect detection via neutrino telescopes such as IceCube and ant...
We study the complementarity between dark matter experiments (direct detection and indirect detectio...
Different mechanisms operate in various regions of the MSSM parameter space to bring the relic densi...
In this article, we explore the ability of direct and indirect dark matter experiments to not only d...
We determine the prospects for direct and indirect detection of thermal relic neutralinos in supersy...
We briefly review the motivations and features of focus point supersymmetry and in particular the fo...
Supersymmetry may be discovered at high energy colliders, through low energy precision measurements,...
Abstract: We have explored Natural Supersymmetry (NSUSY) scenarios with low values of the μ paramete...
Recent results from Higgs boson and supersymmetry searches at the Large Hadron Collider provide stro...
In supersymmetric models where the magnitude of the GUT scale gaugino mass parameter M3 is suppresse...
In recent work, it has been argued that multi-TeV masses for scalar superpartners are not unnatural....
We study direct detection of dark matter in a supersymmetric model where most supersymmetric particl...
Particle physics models with Natural Supersymmetry are characterized by a superpotential parameter μ...
We study the collider signals as well as Dark Matter candidates in supersymmetric models. We show th...
We study the complementarity between dark matter searches (direct detection, neutrino, gamma and pos...
A wide range of techniques have been developed to search for particle dark matter, including direct ...
We study the complementarity between dark matter experiments (direct detection and indirect detectio...
Different mechanisms operate in various regions of the MSSM parameter space to bring the relic densi...
In this article, we explore the ability of direct and indirect dark matter experiments to not only d...
We determine the prospects for direct and indirect detection of thermal relic neutralinos in supersy...
We briefly review the motivations and features of focus point supersymmetry and in particular the fo...
Supersymmetry may be discovered at high energy colliders, through low energy precision measurements,...
Abstract: We have explored Natural Supersymmetry (NSUSY) scenarios with low values of the μ paramete...
Recent results from Higgs boson and supersymmetry searches at the Large Hadron Collider provide stro...
In supersymmetric models where the magnitude of the GUT scale gaugino mass parameter M3 is suppresse...
In recent work, it has been argued that multi-TeV masses for scalar superpartners are not unnatural....
We study direct detection of dark matter in a supersymmetric model where most supersymmetric particl...
Particle physics models with Natural Supersymmetry are characterized by a superpotential parameter μ...
We study the collider signals as well as Dark Matter candidates in supersymmetric models. We show th...
We study the complementarity between dark matter searches (direct detection, neutrino, gamma and pos...
A wide range of techniques have been developed to search for particle dark matter, including direct ...
We study the complementarity between dark matter experiments (direct detection and indirect detectio...
Different mechanisms operate in various regions of the MSSM parameter space to bring the relic densi...
In this article, we explore the ability of direct and indirect dark matter experiments to not only d...