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Toward Holographic Reconstruction of Bulk Geometry from Lattice Simulations
A black hole described in SU(N) gauge theory consists of N D-branes. As a proof of the concept, we perform an explicit calculation in the matrix model dual to the black zero-brane in type IIA string theory. We study the geometry of the black hole in this dual representation using lattice Monte Carlo simulations.
Enrico Rinaldi
,
Evan Berkowitz
,
Masanori Hanada
,
Jonathan Maltz
,
Pavlos Vranas
Preprint
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DOI
JHEP
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Lattice field theory results on new strong dynamics.
Contribution to the workshop
Old and New Strong Interactions from LHC to Future Colliders
(
LFC17
) at ECT*
Enrico Rinaldi
Preprint
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Project
PRL
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Near-conformal gauge theories with many flavors
Discover properties of strongly-interacting theories with many quarks via numerical Monte Carlo simulations.
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Nuclear Physics from Lattice QCD
Understand the properties of hadrons from the fundamental theory of quarks and gluons (QCD).
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CalLat
Nucleon Higher Partial-Wave Scattering from Lattice QCD.
Nucleon-nucleon scattering phase shifts in higher partial waves from Lattice QCD simulations at heavy pion masses.
Enrico Rinaldi
,
Evan Berkowitz
,
Thorsten Kurth
,
Amy Nicholson
,
Balint Joo
,
Mark Strother
,
Pavlos M. Vranas
,
Andre Walker-Loud
Preprint
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Project
DOI
PLB
PLUMx
Precision lattice test of the gauge/gravity duality at large N
We pioneer a systematic, large-scale lattice simulation of D0-brane quantum mechanics. The large-$N$ and continuum limits of the gauge …
Evan Berkowitz
,
Enrico Rinaldi
,
Masanori Hanada
,
Goro Ishiki
,
Shinji Shimasaki
,
Pavlos Vranas
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DOI
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