© 2017, The Author(s). At low energies or temperatures, maximally supersymmetric Yang-Mills theory on ℝ(t)× S1 with large N gauge group SU(N) and strong t’Hooft coupling is conjectured to be dual to the low energy dynamics of a collection of D0-branes on a circle. We construct thermal states in the gravitational side of the correspondence where we find a first-order phase transition between states that are uniform on the S1 and states that are localised on it. When compared with lattice computations that are now available, these critical values provide the first instance where a first-order phase transition is tested on both sides of gauge/gravity duality
We present our current results from ongoing lattice investigations of the Berenstein-Maldacena-Nasta...
Abstract: We present a lattice study of the equation of state in Yang-Mills theory based on the exce...
Maximally supersymmetric ( p + 1)-dimensional Yang-Mills theory at large N and finite temperature, w...
At low energies or temperatures, maximally supersymmetric Yang-Mills theory on R(t)×S1 with large N ...
Abstract At low energies or temperatures, maximally supersymmetric Yang-Mills theory on ℝ t × S 1 $$...
We report on the results of numerical simulations of 1+1 dimensional SU(N) Yang-Mills theory with ma...
We report on the results of numerical simulations of 1+1 dimensional SU(N) Yang-Mills theory with ma...
This Article is brought to you for free and open access by the College of Arts and Sciences at SURFA...
We review and extend earlier work that uses the AdS/CFT correspondence to relate the black-hole-blac...
We review and extend earlier work that uses the AdS/CFT correspondence to relate the black-hole-blac...
We review and extend earlier work that uses the AdS/CFT correspondence to relate the black hole-blac...
We study the bosonic matrix model obtained as the high-temperature limit of two-dimensional maximall...
We study the bosonic matrix model obtained as the high-temperature limit of two-dimensional maximall...
We study the bosonic matrix model obtained as the high-temperature limit of two-dimensional maximall...
Maximally supersymmetric (p+1)-dimensional Yang-Mills theory at large N and finite temperature, with...
We present our current results from ongoing lattice investigations of the Berenstein-Maldacena-Nasta...
Abstract: We present a lattice study of the equation of state in Yang-Mills theory based on the exce...
Maximally supersymmetric ( p + 1)-dimensional Yang-Mills theory at large N and finite temperature, w...
At low energies or temperatures, maximally supersymmetric Yang-Mills theory on R(t)×S1 with large N ...
Abstract At low energies or temperatures, maximally supersymmetric Yang-Mills theory on ℝ t × S 1 $$...
We report on the results of numerical simulations of 1+1 dimensional SU(N) Yang-Mills theory with ma...
We report on the results of numerical simulations of 1+1 dimensional SU(N) Yang-Mills theory with ma...
This Article is brought to you for free and open access by the College of Arts and Sciences at SURFA...
We review and extend earlier work that uses the AdS/CFT correspondence to relate the black-hole-blac...
We review and extend earlier work that uses the AdS/CFT correspondence to relate the black-hole-blac...
We review and extend earlier work that uses the AdS/CFT correspondence to relate the black hole-blac...
We study the bosonic matrix model obtained as the high-temperature limit of two-dimensional maximall...
We study the bosonic matrix model obtained as the high-temperature limit of two-dimensional maximall...
We study the bosonic matrix model obtained as the high-temperature limit of two-dimensional maximall...
Maximally supersymmetric (p+1)-dimensional Yang-Mills theory at large N and finite temperature, with...
We present our current results from ongoing lattice investigations of the Berenstein-Maldacena-Nasta...
Abstract: We present a lattice study of the equation of state in Yang-Mills theory based on the exce...
Maximally supersymmetric ( p + 1)-dimensional Yang-Mills theory at large N and finite temperature, w...