We present calculations in which an energetic light quark shoots through a finite slab of strongly coupled N = 4 supersymmetric Yang-Mills (SYM) plasma, with thickness L, focusing on what comes out on the other side. We find that even when the “jets” that emerge from the plasma have lost a substantial fraction of their energy they look in almost all respects like “jets” in vacuum with the same reduced energy. The one possible exception is that the opening angle of the “jet” is larger after passage through the slab of plasma than before. Along the way, we obtain a fully geometric characterization of energy loss in the strongly coupled plasma and show that dE[subscript out]/dL ∝ L[superscript 2]/√x[2 over stop] − L[superscript 2], where E[sub...
In the context of the hybrid strong/weak coupling model for jet quenching, we perform a global fit t...
In this dissertation we study the phenomenon of jet quenching in quark-gluon plasma using the AdS/CF...
Recently Liu, Rajagopal and Wiedemann (LRW) [hep-ph/0605178] proposed a first principle, nonperturba...
We calculate how the energy and the opening angle of jets in N = 4 SYM theory evolve as they propag...
We propose and explore a new hybrid approach to jet quenching in a strongly coupled medium. The basi...
We calculate P (k [subscript ⊥]), the probability distribution for an energetic parton that propagat...
We propose and explore a new hybrid approach to jet quenching in a strongly coupled medium. The basi...
We study finite-coupling corrections on the energy loss of light quarks in strongly coupled $${\math...
We explore a novel hybrid model containing both strong and weak coupling physics for high energy jet...
We propose a novel definition of a holographic light hadron jet and consider the phenomenological co...
We study the medium-induced energy loss -Delta E_0(L_p) suffered by a heavy quark produced at initia...
Abstract High-energy partons (E ≫ T ) traveling through a quark-gluon plasma lose energy by splittin...
In this dissertation, the gauge/gravity duality is used to study light quark jet quenching in the co...
We construct a generalization of the JIMWLK Hamiltonian, going beyond the eikonal approximation, whi...
We study the energy loss of a quark moving in the strongly coupled $\mathcal{N} = 4$ supersymmetric ...
In the context of the hybrid strong/weak coupling model for jet quenching, we perform a global fit t...
In this dissertation we study the phenomenon of jet quenching in quark-gluon plasma using the AdS/CF...
Recently Liu, Rajagopal and Wiedemann (LRW) [hep-ph/0605178] proposed a first principle, nonperturba...
We calculate how the energy and the opening angle of jets in N = 4 SYM theory evolve as they propag...
We propose and explore a new hybrid approach to jet quenching in a strongly coupled medium. The basi...
We calculate P (k [subscript ⊥]), the probability distribution for an energetic parton that propagat...
We propose and explore a new hybrid approach to jet quenching in a strongly coupled medium. The basi...
We study finite-coupling corrections on the energy loss of light quarks in strongly coupled $${\math...
We explore a novel hybrid model containing both strong and weak coupling physics for high energy jet...
We propose a novel definition of a holographic light hadron jet and consider the phenomenological co...
We study the medium-induced energy loss -Delta E_0(L_p) suffered by a heavy quark produced at initia...
Abstract High-energy partons (E ≫ T ) traveling through a quark-gluon plasma lose energy by splittin...
In this dissertation, the gauge/gravity duality is used to study light quark jet quenching in the co...
We construct a generalization of the JIMWLK Hamiltonian, going beyond the eikonal approximation, whi...
We study the energy loss of a quark moving in the strongly coupled $\mathcal{N} = 4$ supersymmetric ...
In the context of the hybrid strong/weak coupling model for jet quenching, we perform a global fit t...
In this dissertation we study the phenomenon of jet quenching in quark-gluon plasma using the AdS/CF...
Recently Liu, Rajagopal and Wiedemann (LRW) [hep-ph/0605178] proposed a first principle, nonperturba...