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Trina Basu

Publications and source records attributed to Trina Basu.

2 recordsLinked to original sources

Polarization interference in exclusive $V+$jets at all orders in $\alpha_s$

Using new methods for computing helicity amplitudes with intermediate helicity-polarized gauge bosons, we revisit the transverse-longitudinal polarization interference in the $pp\to V+{\rm jets}$ process for $V=\gamma^*,Z^{(*)},W^{(*)}$ decaying to massless leptons. At each order of the strong coupling constant $\alpha_s$ and remaining exclusive with respect to jet kinematics, we show that the polarization interference in $\gamma^*\to\ell^+\ell^-$ vanishes after phase-space integration over the kinematics of $\ell^\pm$, thereby extending well-known results for the inclusive process. Due to parity violation, cancellations are softened for the $W$ and $Z$ bosons. We give a simple formula to account for fiducial cuts. We comment on the implications for multiboson processes, and the applicability of our results to chiral gauge bosons in new physics scenarios and to polarization measurements of weak bosons in heavy ion collisions.

hep-ph

The Four Polarizations of the $W$ at High Energies

We investigate polarization-induced interference, off-shell effects, and gauge cancellations in predictions for high-energy, multi-leg processes with (near) resonant weak bosons. Building on the ``polarized propagator'' paradigm, we carry out our analysis at the level of helicity amplitudes and squared amplitudes, computing polarization interference directly. We introduce analytical decompositions of polarized propagators, valid for covariant and axial gauges, that simplify the organization and evaluation of polarized amplitudes, and make power counting of mass-over-energy factors manifest. We show: (i) For the fully massive case, polarization interference can exceed $\mathcal{O}(\Gamma_V^2/M_V^2)$ width-over-mass corrections, limiting the applicability of the narrow width and pole approximation at low energies. (ii) At the fully differential level, interference can naturally be larger than squared longitudinal amplitudes but can also vanish when bosons are emitted by unpolarized sources. (iii) When weak bosons decay to massless fermions, the non-interference of polarization after angular integration extends to the off-shell regime but remains approximate due to $V-A$ couplings. Guided by BRST invariance, we propose a simple scheme for grouping together polarizations that reduces gauge ambiguities in predictions for polarized scattering rates and is applicable to the fully massive case. As case studies, we examine polarization interference in $W$(+jets), top quark decay, and neutrino deep-inelastic scattering. For decays of unpolarized top quarks, interference exactly cancels at the totally unintegrated level.

hep-ph