activity
20162023
most citedHamiltonian truncation in Anti-de Sitter spacetime

22 citations · 34 across the 4 of their papers we have counts for

collaborators

6 papers

hep-th2023★ 8 cited

Hilbert space of Quantum Field Theory in de Sitter spacetime

Joao Penedones, Kamran Salehi Vaziri, Zimo Sun

We study the decomposition of the Hilbert space of quantum field theory in dimensional de Sitter spacetime into Unitary Irreducible Representations (UIRs) of its isometry g…

hep-th2021★ 3 cited

Towards the non-perturbative cosmological bootstrap

Matthijs Hogervorst, João Penedones, Kamran Salehi Vaziri

We study quantum field theory on a de Sitter spacetime dS background. Our main tool is the Hilbert space decomposition in irreducible unitary representations of its isometr…

hep-th2021★ 22 cited

Hamiltonian truncation in Anti-de Sitter spacetime

Matthijs Hogervorst, Marco Meineri, Joao Penedones +1

Quantum Field Theories (QFTs) in Anti-de Sitter (AdS) spacetime are often strongly coupled when the radius of AdS is large, and few methods are available to study them. In this wor…

physics.acc-ph2017

Measurements and calculations of air activation in the NuMI neutrino production facility at Fermilab with the 120-GeV proton beam on target

I. L. Rakhno, J. Hylen, P. Kasper +4

Measurements and calculations of the air activation at a high-energy proton accelerator are described. The quantity of radionuclides released outdoors depends on operation scenario…

physics.acc-ph2017

Design Of The LBNF Beamline

V. Papadimitriou, K. Ammigan, J. Anderson +31

The Long Baseline Neutrino Facility (LBNF) will utilize a beamline located at Fermilab to provide and aim a neutrino beam of sufficient intensity and appropriate energy range towar…

physics.acc-ph2016★ 1 cited

Design of the LBNF Beamline Target Station

S. Tariq, K. Ammigan, K. Anderson +23

The Long Baseline Neutrino Facility (LBNF) project will build a beamline located at Fermilab to create and aim an intense neutrino beam of appropriate energy range toward the DUNE…