Physics – Quantum Physics
Scientific paper
2007-05-25
Phys. Rev. Lett. 99, 090601 (2007)
Physics
Quantum Physics
4 pages, 4 figures
Scientific paper
10.1103/PhysRevLett.99.090601
In the quest for signatures of coherent transport we consider exciton trapping in the continuous-time quantum walk framework. The survival probability displays different decay domains, related to distinct regions of the spectrum of the Hamiltonian. For linear systems and at intermediate times the decay obeys a power-law, in contrast to the corresponding exponential decay found in incoherent continuous-time random walk situations. To differentiate between the coherent and incoherent mechanisms, we present an experimental protocol based on a frozen Rydberg gas structured by optical dipole traps.
Amthor Thomas
Blumen Alexander
Giese Christian
Muelken Oliver
Reetz-Lamour Markus
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