CWRU PAT Coffee Agenda

Tuesdays 10:30 - 11:30 | Fridays 11:30 - 12:30

+1 On the time evolution of cosmological correlators.

lxj154 +1

+1 Diquark Formation from Nucleon-Nucleon Interactions in Nuclei and Neutron Stars.

gds6 +1

+1 Non-perturbative unitarity and fictitious ghosts in quantum gravity.

lxj154 +1

+1 Unraveling the Dirac Neutrino with Cosmological and Terrestrial Detectors.

gds6 +1

+1 The tune of the universe: the role of plasma in tests of strong-field gravity.

gds6 +1

+1 Distortion of Gravitational-wave Signals by Astrophysical Environments.

gds6 +1

Showing votes from 2020-09-15 11:30 to 2020-09-18 12:30 | Next meeting is Tuesday Sep 9th, 10:30 am.

users

  • No papers in this section today!

astro-ph.CO

  • No papers in this section today!

astro-ph.HE

  • Diquark Formation from Nucleon-Nucleon Interactions in Nuclei and Neutron Stars.- [PDF] - [Article]

    Jennifer Rittenhouse West
     

    The binding energy of diquarks may affect physical phenomena on vastly different scales, from nuclei to neutron stars. On nuclear scales, the ratio of nucleon structure functions for $A>3$ nuclei as compared to deuterium is distorted from theoretical predictions in the quark momentum fraction range $0.3 < x_{B} < 0.7$. A QCD model for structure function distorting short-range nucleon-nucleon interactions is given in terms of diquark degrees of freedom. A diquark can form in the attractive $\rm SU(3)_C$ channel acting on the valence quarks of two overlapping nucleons and its binding energy may be calculated from color hyperfine structure arguments. The most energetically favorable diquark configuration is a valence $u$ quark from one nucleon with a valence $d$ quark from the other in a spin-0 state bound together via single gluon exchange. Diquarks carry color charge, are in the antifundamental representation of $\rm SU(3)_C$ and can act as the QCD equivalent of $\rm U(1)_{\rm EM}$ Cooper pairs by breaking $\rm SU(3)_C$ for the duration of the diquark bond. In the quark-diquark model of baryon structure, the new diquark may effectively form a color-charged bosonic condensate in nuclear matter; a set of 3 QCD Cooper pairs in the two nucleon system. Formation of a new scalar isospin singlet $[ud]$ diquark with binding energy $\sim 150 ~\rm MeV$ between overlapping nucleons is proposed as the primary QCD foundation for short-range nucleon-nucleon correlation models of distorted structure functions in nuclei, with smaller contributions from the spin-1 isospin-1 triplet $(ud)$, $(uu)$ and $(dd)$ of binding energies $67-75~\rm MeV$. Diquark formation and binding energy release may provide an energetically favorable state for the core of neutron stars to collapse into.

astro-ph.GA

  • No papers in this section today!

astro-ph.IM

  • No papers in this section today!

gr-qc

  • Non-perturbative unitarity and fictitious ghosts in quantum gravity.- [PDF] - [Article]

    Alessia Platania, Christof Wetterich
     

    We discuss aspects of non-perturbative unitarity in quantum field theory. The additional ghost degrees of freedom arising in "truncations" of an effective action at a finite order in derivatives could be fictitious degrees of freedom. Their contributions to the fully-dressed propagator -- the residues of the corresponding ghost-like poles -- vanish once all operators compatible with the symmetry of the theory are included in the effective action. These "fake ghosts" do not indicate a violation of unitarity.

hep-ph

  • No papers in this section today!

hep-th

  • No papers in this section today!

hep-ex

  • No papers in this section today!

quant-ph

  • No papers in this section today!

other

  • No papers in this section today!