Cita:
Ibáñez, S., Martínez-Garaot, S., Chen, X., Torrontegui, E., Muga, J. G. (2011). Shortcuts to adiabaticity for non-Hermitian systems. Physical Review A, 84(2).
Agradecimientos:
We acknowledge funding by the Basque Government (Grant No. IT472-10) and Ministerio de Ciencia e Innovación (FIS2009-12773-C02-01). E.T. and S.I. acknowledge financial support from the Basque Government (Grants No. BFI08.151 and BFI09.39). X.C. acknowledges support from Juan de la Cierva Programme and the National Natural Science Foundation of China (Grant No. 60806041).
Adiabatic processes driven by non-Hermitian, time-dependent Hamiltonians may be sped up by generalizing inverse engineering techniques based on counter-diabatic (transitionless driving) algorithms or on dynamical invariants. We work out the basic theory and exAdiabatic processes driven by non-Hermitian, time-dependent Hamiltonians may be sped up by generalizing inverse engineering techniques based on counter-diabatic (transitionless driving) algorithms or on dynamical invariants. We work out the basic theory and examples described by two-level Hamiltonians: the acceleration of rapid adiabatic passage with a decaying excited level and of the dynamics of a classical particle on an expanding harmonic oscillator.[+][-]
Nota:
Ibáñez, S., Martínez-Garaot, S., Chen, X., Torrontegui, E., Muga, J. G. (2012). Erratum: Shortcuts to adiabaticity for non-Hermitian systems [Phys. Rev. A84, 023415 (2011)]. Physical Review A, 86(1).