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      First law and Smarr formula of black hole mechanics in nonlinear gauge theories

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      Classical and Quantum Gravity
      IOP Publishing

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          DIRAC-BORN-INFELD ACTION FROM DIRICHLET σ-MODEL

          R.G. LEIGH (1989)
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            Non-linear electrodynamics from quantized strings

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              Enthalpy and the Mechanics of AdS Black Holes

              We present geometric derivations of the Smarr formula for static AdS black holes and an expanded first law that includes variations in the cosmological constant. These two results are further related by a scaling argument based on Euler's theorem. The key new ingredient in the constructions is a two-form potential for the static Killing field. Surface integrals of the Killing potential determine the coefficient of the variation of the cosmological constant in the first law. This coefficient is proportional to a finite, effective volume for the region outside the AdS black hole horizon, which can also be interpreted as minus the volume excluded from a spatial slice by the black hole horizon. This effective volume also contributes to the Smarr formula. Since the cosmological constant is naturally thought of as a pressure, the new term in the first law has the form of effective volume times change in pressure that arises in the variation of the enthalpy in classical thermodynamics. This and related arguments suggest that the mass of an AdS black hole should be interpreted as the enthalpy of the spacetime.
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                Author and article information

                Journal
                Classical and Quantum Gravity
                Class. Quantum Grav.
                IOP Publishing
                0264-9381
                1361-6382
                July 26 2018
                July 26 2018
                June 21 2018
                : 35
                : 14
                : 145007
                Article
                10.1088/1361-6382/aac9d4
                366898ec-7503-4ad5-bcef-a4c12d583827
                © 2018

                http://iopscience.iop.org/info/page/text-and-data-mining

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