Hawking radiation of an apparent horizon in a FRW universe
Rong-Gen Cai, Li-Ming Cao, Ya-Peng Hu
Abstract
Open-access reader
Rong-Gen Cai, Li-Ming Cao, Ya-Peng Hu
Abstract
Open-access reader
Hawking radiation is an important quantum phenomenon of a black hole, which is closely related to the existence of an event horizon of a black hole. The cosmological event horizon of de Sitter space is also of Hawking radiation with a thermal spectrum. By use of the tunneling approach, we show that there is indeed a Hawking radiation with temperature, , for a locally defined apparent horizon of a Friedmann–Robertson–Walker universe with any spatial curvature, where is the apparent horizon radius. Thus we fill in the gap existing in the literature investigating the relation between the first law of thermodynamics and Friedmann equations; there the apparent horizon is assumed to have such a temperature without any proof. In addition, we stress the implication of the Hawking temperature associated with the apparent horizon.
OpenAlex reports 301 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Hawking radiation is an important quantum phenomenon of a black hole, which is closely related to the existence of an event horizon of a black hole. The cosmological event horizon of de Sitter space is also of Hawking radiation with a thermal spectrum. By use of the tunneling approach, we show that there is indeed a Hawking radiation with temperature, , for a locally defined apparent horizon of a Friedmann–Robertson–Walker universe with any spatial curvature, where is the apparent horizon radius. Thus we fill in the gap existing in the literature investigating the relation between the first law of thermodynamics and Friedmann equations; there the apparent horizon is assumed to have such a temperature without any proof. In addition, we stress the implication of the Hawking temperature associated with the apparent horizon.
Key concepts: Physics, Event horizon, Hawking radiation, Apparent horizon, Friedmann–Lemaître–Robertson–Walker metric, Black hole (networking), Horizon, Black hole thermodynamics