Quark and gluon entanglement in the proton on the light cone at intermediate
arXiv:2202.01803 · doi:10.1103/PhysRevD.105.074030
Abstract
In QCD with colors the anti-symmetric valence quark color space singlet state of the proton corresponds to the reduced density matrix for a single color degree of freedom. Its degenerate spectrum of eigenvalues, , the purity , and the von~Neumann entropy all indicate maximal entanglement of color. On the other hand, for the spatial wave function of the proton factorizes into valence quark wave functions determined by a mean field (E. Witten, Nucl. Phys. B 160 (1979) p. 57) where there is no entanglement of spatial degrees of freedom. A model calculation at using a simple three quark model light-front wave function by Brodsky and Schlumpf, predicts percent level entanglement of spatial degrees of freedom. Using light-cone perturbation theory we also derive the density matrix associated with the four parton Fock state. Tracing out the quarks, we construct the reduced density matrix for the degrees of freedom of the gluon, which encodes its entanglement with the sources. Our expressions provide the dependence of the density matrix on the soft cutoff for the gluon light-cone momentum, and on the collinear and ultraviolet regulators. Numerical results obtained in a simple approximation indicate stronger entanglement for the gluon (with ) than for quarks in the three quark Fock state.
v2: minor revisions; v3: corrected two expressions, final version
References in corpus (14)
- Revealing proton shape fluctuations with incoherent diffraction at high energy
- Mining for Gluon Saturation at Colliders
- The shape of the proton at high energies
- Diffractive Dijet Production and Wigner Distributions from the Color Glass Condensate
- The Color Glass Condensate density matrix: Lindblad evolution, entanglement entropy and Wigner functional
- Deep inelastic scattering as a probe of entanglement: confronting experimental data
- Evidence for the maximally entangled low proton in Deep Inelastic Scattering from H1 data
- Color charge correlations in the proton at NLO: beyond geometry based intuition
- Investigating entanglement entropy at small-x in DIS off protons and nuclei
- Entanglement entropy production in deep inelastic scattering
- Entanglement, partial set of measurements, and diagonality of the density matrix in the parton model
- Hot spots and gluon field fluctuations as causes of eccentricity in small systems
- Cubic color charge correlator in a proton made of three quarks and a gluon
- QCD Factorization and Quantum Mechanics
Cited by in corpus (13)
- The Present and Future of QCD
- Maximally entangled proton and charged hadron multiplicity in Deep Inelastic Scattering
- QCD evolution of entanglement entropy
- Rapidity evolution of the entanglement entropy in quarkonium: parton and string duality
- Investigating the QCD dynamical entropy in high-energy hadronic collisions
- Entanglement entropy of the proton in coordinate space
- Entanglement as a probe of hadronization
- Quark pair angular correlations in the proton: entropy versus entanglement negativity
- Quantum Entanglement and the Thermal Hadron
- 1+1D Hadrons Minimize their Biparton Renyi Free Energy
- Quantum entanglement correlations in double quark PDFs
- Entropy and multiplicity of hadrons in the high energy limit within dipole cascade models
- Quantum entanglement between partons in a strongly coupled quantum field theory