Guei Yuanxing has proved that there are not any bound state of bosons if ω≠0 in asymptotic flat and 4-dimensional static pseudo-Riemann space-time. Here we extend his conclusion to general 4-dimensional steady state...Guei Yuanxing has proved that there are not any bound state of bosons if ω≠0 in asymptotic flat and 4-dimensional static pseudo-Riemann space-time. Here we extend his conclusion to general 4-dimensional steady states of pseudoRiemann spacetime and show that there indeed exist some bound states if展开更多
Dyon black hole, namely Kerr-Newman-Kasuya black hole, has been found by applying the concept of magnetic monopole to the black hole theory. Some workers have discussed the quantum effect of the dyon black hole. In th...Dyon black hole, namely Kerr-Newman-Kasuya black hole, has been found by applying the concept of magnetic monopole to the black hole theory. Some workers have discussed the quantum effect of the dyon black hole. In this note, the Hawking radiation of Dirac particles with electric and magnetic charge on event horizon of Kerr-Newman-Kasuya black展开更多
Recently Guei Yuanxing has studied the bound states of bonsons in 4-dimensional static Riemann space-time. Here we will extend his results to the case of Dirac particles. In 4-dimensional Riemann space-time, we
文摘Guei Yuanxing has proved that there are not any bound state of bosons if ω≠0 in asymptotic flat and 4-dimensional static pseudo-Riemann space-time. Here we extend his conclusion to general 4-dimensional steady states of pseudoRiemann spacetime and show that there indeed exist some bound states if
文摘Dyon black hole, namely Kerr-Newman-Kasuya black hole, has been found by applying the concept of magnetic monopole to the black hole theory. Some workers have discussed the quantum effect of the dyon black hole. In this note, the Hawking radiation of Dirac particles with electric and magnetic charge on event horizon of Kerr-Newman-Kasuya black
文摘Recently Guei Yuanxing has studied the bound states of bonsons in 4-dimensional static Riemann space-time. Here we will extend his results to the case of Dirac particles. In 4-dimensional Riemann space-time, we