Thermal three-point functions from holographic Schwinger-Keldysh contours
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[1] M. Rangamani,et al. Holographic open quantum systems: toy models and analytic properties of thermal correlators , 2022, Journal of High Energy Physics.
[2] D. Berenstein,et al. Aspects of thermal one-point functions and response functions in AdS black holes , 2022, Physical Review D.
[3] M. Rangamani,et al. An effective description of charge diffusion and energy transport in a charged plasma from holography , 2022, Journal of High Energy Physics.
[4] M. Rangamani,et al. The timbre of Hawking gravitons: an effective description of energy transport from holography , 2022, Journal of High Energy Physics.
[5] Stephen R. Green,et al. Nonlinear effects in the black hole ringdown: Absorption-induced mode excitation , 2021, Physical Review D.
[6] P. J. Martínez,et al. Thermalization of holographic excited states , 2021, Journal of High Energy Physics.
[7] M. Rangamani,et al. An effective description of momentum diffusion in a charged plasma from holography , 2021, Journal of High Energy Physics.
[8] J. Russo,et al. Thermal correlation functions in CFT and factorization , 2021, Journal of High Energy Physics.
[9] David Meltzer. Dispersion formulas in QFTs, CFTs and holography , 2021, Journal of High Energy Physics.
[10] J. K. Ghosh,et al. Effective field theory of stochastic diffusion from gravity , 2020, Journal of High Energy Physics.
[11] R. Loganayagam,et al. Holographic KMS relations at finite density , 2020, 2011.08173.
[12] R. Loganayagam,et al. Fermionic Open EFT from Holography , 2020, 2011.07039.
[13] J. Maldacena,et al. Proper time to the black hole singularity from thermal one-point functions , 2020, Journal of High Energy Physics.
[14] Benjamin Withers,et al. From sources to initial data and back again: on bulk singularities in Euclidean AdS/CFT , 2020, Journal of High Energy Physics.
[15] M. Rangamani,et al. Open quantum systems and Schwinger-Keldysh holograms , 2020, Journal of High Energy Physics.
[16] Juan F. Zarate,et al. Modular Hamiltonian for holographic excited states , 2020, 2002.04637.
[17] Aron Jansen,et al. Entropy production from quasinormal modes , 2020, 2001.07220.
[18] Bidisha Chakrabarty,et al. Nonlinear Langevin dynamics via holography , 2019, Journal of High Energy Physics.
[19] A. Cavalleri,et al. Pump Frequency Resonances for Light-Induced Incipient Superconductivity in YBa2Cu3O6.5 , 2019, Physical Review X.
[20] H. Chen,et al. Holographic CFT states for localized perturbations to AdS black holes , 2019, Journal of High Energy Physics.
[21] P. J. Martínez,et al. Holographic excited states in AdS black holes , 2019, Journal of High Energy Physics.
[22] M. Crossley,et al. A prescription for holographic Schwinger-Keldysh contour in non-equilibrium systems , 2018, 1812.08785.
[23] J. Boer,et al. Holographic Schwinger-Keldysh effective field theories , 2018, Journal of High Energy Physics.
[24] R. Loganayagam,et al. Spectral representation of thermal OTO correlators , 2018, Journal of High Energy Physics.
[25] P. J. Martínez,et al. The gravity dual of real-time CFT at finite temperature , 2018, Journal of High Energy Physics.
[26] Paolo Glorioso,et al. Lectures on non-equilibrium effective field theories and fluctuating hydrodynamics , 2018, Proceedings of Theoretical Advanced Study Institute Summer School 2017 "Physics at the Fundamental Frontier" — PoS(TASI2017).
[27] M. Raamsdonk,et al. From Euclidean sources to Lorentzian spacetimes in holographic conformal field theories , 2017, Journal of High Energy Physics.
[28] P. J. Martínez,et al. Interacting fields in real-time AdS/CFT , 2017, 1703.02384.
[29] Benjamin Withers. Nonlinear conductivity and the ringdown of currents in metallic holography , 2016, Journal of High Energy Physics.
[30] Benjamin Withers. Nonlinear conductivity and the ringdown of currents in metallic holography , 2016, 1606.03457.
[31] R. Myers,et al. A holographic model for quantum critical responses , 2016 .
[32] Kostas Skenderis,et al. Holographic construction of excited CFT states , 2016, 1602.02039.
[33] P. J. Martínez,et al. On excited states in real-time AdS/CFT , 2015, 1512.07850.
[34] Ning Su,et al. Finite-temperature three-point function in 2D CFT , 2014, 1407.3415.
[35] G. Horowitz,et al. Simple holographic model of nonlinear conductivity , 2013, 1309.5088.
[36] B. V. Rees,et al. Real-time gauge/gravity duality and ingoing boundary conditions , 2009, 0902.4010.
[37] Kostas Skenderis,et al. Real-time gauge/gravity duality: prescription, renormalization and examples , 2008, 0812.2909.
[38] Kostas Skenderis,et al. Real-time gauge/gravity duality. , 2008, Physical review letters.
[39] H. Nakano,et al. Second and Higher-Order Quasinormal Modes in Binary Black Hole Mergers , 2007, 0704.3467.
[40] D. Son,et al. Schwinger-Keldysh propagators from AdS/CFT correspondence , 2002, hep-th/0212072.
[41] D. Son,et al. Minkowski-space correlators in AdS/CFT correspondence: recipe and applications , 2002 .
[42] S. Solodukhin,et al. Conformal field theory interpretation of black hole quasinormal modes. , 2001, Physical review letters.
[43] U. Heinz,et al. Generalized fluctuation-dissipation theorem for nonlinear response functions , 1998, hep-th/9809016.
[44] J. Pullin,et al. Second Order Perturbations of a Schwarzschild Black Hole: Inclusion of Odd Parity Perturbations , 1995, gr-qc/9510049.
[45] B. Hao,et al. EQUILIBRIUM AND NONEQUILIBRIUM FORMALISMS MADE UNIFIED , 1985 .
[46] Marina Schroder,et al. Pct Spin And Statistics And All That , 2016 .
[47] Rudolf Haag,et al. Local quantum physics : fields, particles, algebras , 1993 .
[48] R. Haag,et al. Local quantum physics , 1992 .