We construct numerically finite density domain-wall solutions which interpolate between two AdS 4 fixed points and exhibit an intermediate regime of hyperscaling violation, with or without Lifshitz scaling. Such RG flows can be realized in gravitational models containing a dilatonic scalar and a massive vector field with appropriate choices of the scalar potential and couplings. The infrared AdS 4 fixed point describes a new ground state for strongly coupled quantum systems realizing such scalings, thus avoiding the well-known extensive zero temperature entropy associated with Ad S 2 × ℝ 2 $$ Ad{S}_2\times {\mathrm{\mathbb{R}}}^2 $$ . We also examine the zero temperature behavior of the optical conductivity in these backgrounds and identif...
For a class of D = 5 holographic models we construct boomerang RG flow solutions that start in the U...
A Vaidya type geometry describing gravitation collapse in asymptotically Lifshitz spacetime with hyp...
Journal of High Energy Physics 2015.1 (2015): 052 reproduced by permission of Scuola Internazionale ...
We construct numerically finite density domain-wall solutions which interpolate between two AdS 4 fi...
We construct numerically finite density domain-wall solutions which interpolate between two AdS 4 fi...
We construct numerically finite density domain-wall solutions which interpolate between two AdS 4 fi...
We perform a study of possible instabilities of the infrared AdS 2 × $ {{\mathbb{R}}^2} $ region of ...
We show that strongly-coupled, translation-invariant holographic IR phases at finite density can be ...
We investigate a class of near-extremal solutions of Einstein-Maxwell-scalar theory with electric ch...
We construct novel RG flows of D=11 supergravity that asymptotically approach AdS4 × S7 in the UV wi...
For a class of D = 5 holographic models we construct boomerang RG flow solutions that start in the U...
Via the AdS/CFT correspondence, ground states of field theories at finite charge density are mapped ...
We develop a general framework for computing the holographic 2-point functions and the correspondin...
To describe Lifshitz and hyperscaling violating (HSV) phenomena in CM one uses gauge fields on the g...
We study holographic RG flows in a 3d supergravity model from the side of the dynamical system theor...
For a class of D = 5 holographic models we construct boomerang RG flow solutions that start in the U...
A Vaidya type geometry describing gravitation collapse in asymptotically Lifshitz spacetime with hyp...
Journal of High Energy Physics 2015.1 (2015): 052 reproduced by permission of Scuola Internazionale ...
We construct numerically finite density domain-wall solutions which interpolate between two AdS 4 fi...
We construct numerically finite density domain-wall solutions which interpolate between two AdS 4 fi...
We construct numerically finite density domain-wall solutions which interpolate between two AdS 4 fi...
We perform a study of possible instabilities of the infrared AdS 2 × $ {{\mathbb{R}}^2} $ region of ...
We show that strongly-coupled, translation-invariant holographic IR phases at finite density can be ...
We investigate a class of near-extremal solutions of Einstein-Maxwell-scalar theory with electric ch...
We construct novel RG flows of D=11 supergravity that asymptotically approach AdS4 × S7 in the UV wi...
For a class of D = 5 holographic models we construct boomerang RG flow solutions that start in the U...
Via the AdS/CFT correspondence, ground states of field theories at finite charge density are mapped ...
We develop a general framework for computing the holographic 2-point functions and the correspondin...
To describe Lifshitz and hyperscaling violating (HSV) phenomena in CM one uses gauge fields on the g...
We study holographic RG flows in a 3d supergravity model from the side of the dynamical system theor...
For a class of D = 5 holographic models we construct boomerang RG flow solutions that start in the U...
A Vaidya type geometry describing gravitation collapse in asymptotically Lifshitz spacetime with hyp...
Journal of High Energy Physics 2015.1 (2015): 052 reproduced by permission of Scuola Internazionale ...