arXiv · 0912.4362
Atomtronics with holes: Coherent transport of an empty site in a triple well potential
Abstract
We investigate arrays of three traps with two fermionic or bosonic atoms. The tunneling interaction between neighboring sites is used to prepare multi-site dark states for the empty site, i.e., the hole, allowing for the coherent manipulation of its external degrees of freedom. By means of an ab initio integration of the Schrödinger equation, we investigate the adiabatic transport of a hole between the two extreme traps of a triple-well potential. Furthermore, a quantum-trajectory approach based on the de Broglie-Bohm formulation of quantum mechanics is used to get physical insight into the transport process. Finally, we discuss the use of the hole for the construction of a coherent single hole diode and a coherent single hole transistor.
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Albert Benseny, Sonia Fernández-Vidal, Joan Bagudà, Ramón Corbalán, Antonio Picón, Luis Roso, Gerhard Birkl, Jordi Mompart. 2010-06-15. Atomtronics with holes: Coherent transport of an empty site in a triple well potential. https://doi.org/10.1103/physreva.82.013604
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