| Literature DB >> 28074908 |
Abstract
We show how to transform a Dirac equation in a curved static spacetime into a Dirac equation in flat spacetime. In particular, we show that any solution of the free massless Dirac equation in a 1 + 1 dimensional flat spacetime can be transformed via a local phase transformation into a solution of the corresponding Dirac equation in a curved static background, where the spacetime metric is encoded into the phase. In this way, the existing quantum simulators of the Dirac equation can naturally incorporate curved static spacetimes. As a first example we use our technique to obtain solutions of the Dirac equation in a particular family of interesting spacetimes in 1 + 1 dimensions.Entities:
Year: 2017 PMID: 28074908 PMCID: PMC5225476 DOI: 10.1038/srep40346
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Probability density dynamics of a Dirac wavepacket in: (a), (c), (e) (top row) flat spacetime and (b), (d), (f) (bottom row) wormhole spacetime with b0 = 10. The initial position is: (a), (b) (first column) x0 = −10; (c), (d) (second column) x0 = 1 and (e), (f) (third column) x0 = 5. The Gaussian width is σ = 5 in all cases. Note that the point x = 0 is not included in (b).