
jerzy.lukierski@uwr.edu.pl
tel. +48 71 375 94 52
Zainteresowania
- nuclear particles physics
- quantum deformations
- space time symmetries
- quantum gravity
- models of quantum gravity
- generalized lorentz symmetries
- superspaces
- quantum groups
- non commutative geometry
- extended supersymmetry
Dyscyplina naukowa
- nauki fizyczne
Najnowsze publikacje
- Quantum D = 3 Euclidean and Poincaré symmetries from contraction limits
- Quantum perturbative solutions of extended Snyder and Yang models with spontaneous symmetry breaking
- Generalized quantum phase spaces for the κ-deformed extended Snyder model
- Internal quark symmetries and colour SU(3) entangled with Z3-graded Lorentz algebra
- Z3-graded colour Dirac equations for quarks, confinement and generalized Lorentz symmetries
- Spinorial Snyder and Yang models from superalgebras and noncommutative quantum superspaces
- Two θμν -deformed covariant relativistic quantum phase spaces as Poincaré-Hopf algebroids
- Quantum twist-deformed D = 4 phase spaces with spin sector and Hopf algebroid structures
- From Snyder space-times to doubly κ-dependent Yang quantum phase spaces and their generalizations
- Palatial Twistors from Quantum Inhomogeneous Conformal Symmetries and Twistorial DSR Algebras
- Quantizations of D = 3 Lorentz symmetry
- Addendum to "Quantum deformations of D = 4 Euclidean, Lorentz, Kleinian and quaternionic o*(4) symmetries in unified o(4;C) setting" [Phys. Lett. B 754 (2016) 176-181]
- Basic quantizations of D = 4 Euclidean, Lorentz, Kleinian and quaternionic o*(4) symmetries
- Towards a Z 3-graded approach to quarks’ symmetries
- Lie-deformed quantum Minkowski spaces from twists: Hopf-algebraic versus Hopf-algebroid approach
- From N=4 Galilean superparticle to three-dimensional non-relativistic N=4 superfields
- On Hopf algebroid structure of kappa-deformed Heisenberg algebra
- Kappa-deformations: historical developments and recent results
- Grawitacja kwantowa i nieprzemienne geometrie kwantowe
- Quantum gravity and noncommutatitive space-times