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Dive into the research topics where A. Ruschhaupt is active.

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Featured researches published by A. Ruschhaupt.


Journal of Physics A | 2005

Physical realization of -symmetric potential scattering in a planar slab waveguide

A. Ruschhaupt; F. Delgado; J. G. Muga

A physical realization of scattering by -symmetric potentials is provided: we show that the Maxwell equations, for an electromagnetic wave travelling along a planar slab waveguide filled with gain and absorbing media in contiguous regions, can be approximated in a parameter range by a Schrodinger equation with a -symmetric scattering potential.


Physical Review Letters | 2010

Shortcut to Adiabatic Passage in Two- and Three-Level Atoms

Xi Chen; I. Lizuain; A. Ruschhaupt; D. Guéry-Odelin; J. G. Muga

We propose a method to speed up adiabatic passage techniques in two-level and three-level atoms extending to the short-time domain their robustness with respect to parameter variations. It supplements or substitutes the standard laser beam setups with auxiliary pulses that steer the system along the adiabatic path. Compared to other strategies, such as composite pulses or the original adiabatic techniques, it provides a fast and robust approach to population control.


Physical Review Letters | 2010

Fast Optimal Frictionless Atom Cooling in Harmonic Traps: Shortcut to Adiabaticity

Xi Chen; A. Ruschhaupt; S. Schmidt; del Campo A; D. Guéry-Odelin; J. G. Muga

A method is proposed to cool down atoms in a harmonic trap without phase-space compression as in a perfectly slow adiabatic expansion, i.e., keeping the same populations of instantaneous levels in the initial and final traps, but in a much shorter time. This may require that the harmonic trap become transiently an expulsive parabolic potential. The cooling times achieved are shorter than those obtained using optimal-control bang-bang methods and real frequencies.


New Journal of Physics | 2012

Optimally robust shortcuts to population inversion in two-level quantum systems

A. Ruschhaupt; Xi Chen; Daniel Alonso; J. G. Muga

We examine the stability versus different types of perturbations of recently proposed shortcuts to adiabaticity to speed up the population inversion of a two-level quantum system. We find the optimally robust processes by using invariant-based engineering of the Hamiltonian. Amplitude noise and systematic errors require different optimal protocols.


Physical Review Letters | 2012

Multiple schrodinger pictures and dynamics in shortcuts to adiabaticity

S. Ibánez; Xi Chen; E. Torrontegui; J. G. Muga; A. Ruschhaupt

A Schrödinger equation may be unitarily transformed into dynamical equations in different interaction pictures which describe a common physical process, i.e., the same underlying interactions and dynamics. In contrast to this standard scenario, other relations are also possible, such as a common interaction-picture dynamical equation corresponding to several Schrödinger equations that represent different physical processes. This may enable us to design alternative and feasible experimental routes for operations that are a priori difficult or impossible to perform. The power of this concept is exemplified by engineering Hamiltonians that improve the performance or make realizable several shortcuts to adiabaticity.


Journal of Physics B | 2009

Frictionless dynamics of Bose–Einstein condensates under fast trap variations

J. G. Muga; Xi Chen; A. Ruschhaupt; D. Guéry-Odelin

A method is proposed to design the time dependence of the trap frequency and achieve in a short time an adiabatic-like (frictionless) evolution of Bose-Einstein condensates governed by the Gross-Pitaevskii equation. Different cases depending on the effective dimension of the trap and the interaction regimes are considered. 2D traps are particularly suitable as the method can be applied without the need to impose any additional time-dependent change in the strength of the interatomic interaction or a Thomas-Fermi regime as it occurs for 1D and 3D traps.


Physical Review Letters | 2013

Robust quantum control by a single-shot shaped pulse

David Daems; A. Ruschhaupt; D. Sugny; S. Guérin

Considering the problem of the control of a two-state quantum system by an external field, we establish a general and versatile method allowing the derivation of smooth pulses which feature the properties of high fidelity, robustness, and low area. Such shaped pulses can be interpreted as a single-shot generalization of the composite pulse-sequence technique with a time-dependent phase.


Journal of Physics B | 2010

Transitionless quantum drivings for the harmonic oscillator

J. G. Muga; Xi Chen; S. Ibánez; I. Lizuain; A. Ruschhaupt

Two methods to change a quantum harmonic oscillator frequency without transitions in a finite time are described and compared. The first method, a transitionless-tracking algorithm, makes use of a generalized harmonic oscillator and a non-local potential. The second method, based on engineering an invariant of motion, only modifies the harmonic frequency in time, keeping the potential local at all times.


New Journal of Physics | 2012

Fast transport of Bose–Einstein condensates

E. Torrontegui; Xi Chen; Michele Modugno; S. Schmidt; A. Ruschhaupt; J. G. Muga

We propose an inverse method to accelerate without final excitation the adiabatic transport of a Bose–Einstein condensate. The method is based on a partial extension of the Lewis–Riesenfeld invariants and provides transport protocols that satisfy exactly the no-excitation conditions without approximations. This inverse method is complemented by optimizing the trap trajectory with respect to different physical criteria and by studying the effect of perturbations such as anharmonicities and noise.


Physical Review A | 2013

Fast and robust population transfer in two-level quantum systems with dephasing noise and/or systematic frequency errors

Xiao-Jing Lu; Xi Chen; A. Ruschhaupt; Daniel Alonso; S. Guérin; J. G. Muga

National Natural Science Foundation of China (61176118); Science and Technology Commission of Shanghai Municipality (12QH1400800, 13PJ1403000); Eusko Jaurlaritza (IT472-10); Ministerio de Economia y Competitividad (FIS2012-36673-C03-01);Euskal Herriko Unibertsitatea(UFI 11/55); Ministerio de Ciencia e Innovacion (FIS2010-19998)

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J. G. Muga

University of the Basque Country

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E. Torrontegui

University of the Basque Country

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F. Delgado

University of the Basque Country

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Tom Dowdall

University College Cork

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Thomas Busch

Okinawa Institute of Science and Technology

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I. Lizuain

University of the Basque Country

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S. Martínez-Garaot

University of the Basque Country

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