activity
20172022
most citedExploring the optimality of approximate state preparation quantum circuits with a genetic algorithm

11 citations · 15 across the 2 of their papers we have counts for

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6 papers · 1 filter

hep-th2022★ 4 cited

Holographic spacetime from lattice Yang-Mills theory

Niko Jokela, Arttu Pönni, Kari Rummukainen +2

Entanglement entropy is a notoriously difficult quantity to compute in strongly interacting gauge theories. Existing lattice replica methods have suffered from a severe signal-to-n…

hep-th2021

Quantum information probes of charge fractionalization in large- gauge theories

Brandon S. DiNunno, Niko Jokela, Juan F. Pedraza +1

We study in detail various information theoretic quantities with the intent of distinguishing between different charged sectors in fractionalized states of large- gauge theories…

hep-th2020

Towards precision holography

Niko Jokela, Arttu Pönni

A minimal requirement for any strongly coupled gauge field theory to have a classical dual bulk gravity description is that one should in principle be able to recover the full geom…

hep-th2018

Information flows in strongly coupled ABJM theory

Vijay Balasubramanian, Niko Jokela, Arttu Pönni +1

We use holographic methods to characterize the RG flow of quantum information in a Chern-Simons theory coupled to massive fermions. First, we use entanglement entropy and mutual in…

hep-th2018

Incoherent conductivity of holographic charge density waves

Blaise Goutéraux, Niko Jokela, Arttu Pönni

The DC resistivity of charge density waves weakly-pinned by disorder is controlled by diffusive, incoherent processes rather than slow momentum relaxation. The corresponding incohe…

hep-th2017

Non-commutative massive unquenched ABJM

Yago Bea, Niko Jokela, Arttu Pönni +1

In this paper we study non-commutative massive unquenched Chern-Simons matter theory using its gravity dual. We construct this novel background by applying a TsT-transformation on…