Upper and Lower Limits on Neutralino WIMP Mass and Spin--Independent Scattering Cross Section, and Impact of New (g-2)mu Measurement
Yeong Gyun Kim, Takeshi Nihei, Leszek Roszkowski, Roberto Ruiz de Austri
Abstract
We derive the allowed ranges of the spin--independent interaction cross section for the elastic scattering of neutralinos on proton for wide ranges of parameters of the general Minimal Supersymmetric Standard Model. We investigate the effects of the lower limits on Higgs and superpartner masses from colliders, as well as the impact of constraints from and the new measurement of on the upper and lower limits on . We further explore the impact of the neutralino relic density, including coannihilation, and of theoretical assumptions about the largest allowed values of the supersymmetric parameters. For μ>0, requiring the latter to lie below 1 leads to 10-11 at 100 and 10-8 at 1. When the supersymmetric parameters are allowed above 1, for 440 1020 we derive a parameter--independent lower limit of 2× 10-12. (No similar lower limits can be set for μ<0 nor for 10202.6.) Requiring <0.3 implies a parameter--independent upper limit 2.6. The new --based measurement of (g-2)μ restricts 350 at 1 σ CL and 515 at 2 σ CL, and implies μ>0. The largest allowed values of have already become accessible to recent experimental searches.
Create a lesson
Related papers
Electromagnetic form factors of vector mesons in Einstein-dilaton holographic QCD
Alfonso Ballon-Bayona, Tobias Frederico, Luis A. H. Mamani et al.
An invertible map between 3D Breit-frame mechanical distributions and 2D infinite-momentum-frame mechanical densities in spin-1 hadrons
Kemal Tezgin
Adiabatic hydrodynamization with transverse spatial gradients in boost-invariant plasmas
Uri Sharell, Jasmine Brewer, Weiyao Ke
Line shapes of Ω(2012) production in the Ξ K and Ξπ K decay channels
Natsumi Ikeno, Eulogio Oset
A quantum representation of π fragmentation functions through variational quantum circuits
David F. Rentería-Estrada, Roger J. Hernández-Pinto, Germán Rodrigo et al.
Particle Physics Driven by Quantum Technology - Quantum Simulations and Quantum Sensing
Itay M. Bloch, Marcela Carena, Yifan Chen et al.