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Zohreh Parsa

Publications and source records attributed to Zohreh Parsa.

5 recordsLinked to original sources

Intense Neutrino Beams and Leptonic CP Violation

Effects of the Leptonic CP violating phase,δ, on 3 generation neutrino oscillation rates and asymmetries are discussed. A figure of merit argument is used to show that our ability to measure the phase δis rather insensitive to the value of θ_{13} (for \sin^22θ_{13}\gsim0.01) as well as the detector distance (for very long oscillation baselines). Using a study of ν_μ\toν_e oscillations for BNL-Homestake (2540 km) we show that a conventional horn focused wide band neutrino beam generated by an intense 1-2 MW proton source combined with a very large water Cherenkov detector (250-500 kton) should be able to determine δto about \pm 15^\circ$ in 5\times 10^7sec of running. In addition, such an effort would also measure the other oscillation parameters (θ_{ij},Δm^2_{ij}) with high precision. Similar findings apply to a Fermilab-Homestake (1280 km)baseline. We also briefly discuss features of Superbeams, Neutrino Factories and Beta-Beams.

hep-ph

Neutrino-Electron Scattering Theory

Standard Model predictions for neutrino-electron scattering cross-sections, including effects of electroweak radiative corrections, are reviewed. The sensitivity of those quantities to neutrino dipole moments, z' bosons, dynamical symmetry breaking and other types of ``New Physics'' is described. Neutrino indices of refraction in matter are also discussed. A perspective on future initiatives with intense neutrino sources, such as superbeams and neutrino factories, is given.

hep-ph

Variational Approach in Wavelet Framework to Polynomial Approximations of Nonlinear Accelerator Problems

In this paper we present applications of methods from wavelet analysis to polynomial approximations for a number of accelerator physics problems. According to variational approach in the general case we have the solution as a multiresolution (multiscales) expansion in the base of compactly supported wavelet basis. We give extension of our results to the cases of periodic orbital particle motion and arbitrary variable coefficients. Then we consider more flexible variational method which is based on biorthogonal wavelet approach. Also we consider different variational approach, which is applied to each scale.

physics.acc-ph

Symmetry, Hamiltonian Problems and Wavelets in Accelerator Physics

In this paper we consider applications of methods from wavelet analysis to nonlinear dynamical problems related to accelerator physics. In our approach we take into account underlying algebraical, geometrical and topological structures of corresponding problems.

physics.acc-ph

Higgs Resonance Studies At The First Muon Collider

Higgs resonance signals and backgrounds at the First Muon Collider are discussed. Effects due to beam polarization and background angular distributions (forward-backward charge asymmetries) are examined. The utility of those features for improving precision measurements and narrow resonance ``discovery'' scans is described.

hep-ph